mirror of
https://github.com/privatevoid-net/nix-super.git
synced 2024-11-25 23:36:16 +02:00
8ebd99c74e
We don't want to rely on how C assigns numbers for enums in the wire format. Sure, this is totally determined by the ABI, but it obscures the code and makes it harder to safely change the enum definition (should we need to) without accidentally breaking the wire format.
253 lines
8.5 KiB
C++
253 lines
8.5 KiB
C++
#include "serialise.hh"
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#include "path-with-outputs.hh"
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#include "store-api.hh"
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#include "build-result.hh"
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#include "worker-protocol.hh"
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#include "worker-protocol-impl.hh"
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#include "archive.hh"
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#include "path-info.hh"
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#include <chrono>
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#include <nlohmann/json.hpp>
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namespace nix {
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/* protocol-specific definitions */
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BuildMode WorkerProto::Serialise<BuildMode>::read(const StoreDirConfig & store, WorkerProto::ReadConn conn)
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{
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auto temp = readNum<uint8_t>(conn.from);
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switch (temp) {
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case 0: return bmNormal;
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case 1: return bmRepair;
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case 2: return bmCheck;
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default: throw Error("Invalid build mode");
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}
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}
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void WorkerProto::Serialise<BuildMode>::write(const StoreDirConfig & store, WorkerProto::WriteConn conn, const BuildMode & buildMode)
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{
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switch (buildMode) {
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case bmNormal:
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conn.to << uint8_t{0};
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break;
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case bmRepair:
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conn.to << uint8_t{1};
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break;
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case bmCheck:
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conn.to << uint8_t{2};
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break;
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default:
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assert(false);
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};
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}
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std::optional<TrustedFlag> WorkerProto::Serialise<std::optional<TrustedFlag>>::read(const StoreDirConfig & store, WorkerProto::ReadConn conn)
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{
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auto temp = readNum<uint8_t>(conn.from);
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switch (temp) {
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case 0:
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return std::nullopt;
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case 1:
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return { Trusted };
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case 2:
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return { NotTrusted };
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default:
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throw Error("Invalid trusted status from remote");
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}
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}
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void WorkerProto::Serialise<std::optional<TrustedFlag>>::write(const StoreDirConfig & store, WorkerProto::WriteConn conn, const std::optional<TrustedFlag> & optTrusted)
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{
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if (!optTrusted)
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conn.to << uint8_t{0};
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else {
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switch (*optTrusted) {
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case Trusted:
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conn.to << uint8_t{1};
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break;
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case NotTrusted:
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conn.to << uint8_t{2};
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break;
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default:
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assert(false);
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};
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}
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}
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std::optional<std::chrono::microseconds> WorkerProto::Serialise<std::optional<std::chrono::microseconds>>::read(const StoreDirConfig & store, WorkerProto::ReadConn conn)
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{
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auto tag = readNum<uint8_t>(conn.from);
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switch (tag) {
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case 0:
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return std::nullopt;
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case 1:
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return std::optional<std::chrono::microseconds>{std::chrono::microseconds(readNum<int64_t>(conn.from))};
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default:
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throw Error("Invalid optional tag from remote");
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}
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}
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void WorkerProto::Serialise<std::optional<std::chrono::microseconds>>::write(const StoreDirConfig & store, WorkerProto::WriteConn conn, const std::optional<std::chrono::microseconds> & optDuration)
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{
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if (!optDuration.has_value()) {
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conn.to << uint8_t{0};
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} else {
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conn.to
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<< uint8_t{1}
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<< optDuration.value().count();
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}
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}
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DerivedPath WorkerProto::Serialise<DerivedPath>::read(const StoreDirConfig & store, WorkerProto::ReadConn conn)
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{
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auto s = readString(conn.from);
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if (GET_PROTOCOL_MINOR(conn.version) >= 30) {
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return DerivedPath::parseLegacy(store, s);
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} else {
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return parsePathWithOutputs(store, s).toDerivedPath();
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}
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}
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void WorkerProto::Serialise<DerivedPath>::write(const StoreDirConfig & store, WorkerProto::WriteConn conn, const DerivedPath & req)
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{
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if (GET_PROTOCOL_MINOR(conn.version) >= 30) {
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conn.to << req.to_string_legacy(store);
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} else {
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auto sOrDrvPath = StorePathWithOutputs::tryFromDerivedPath(req);
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std::visit(overloaded {
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[&](const StorePathWithOutputs & s) {
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conn.to << s.to_string(store);
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},
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[&](const StorePath & drvPath) {
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throw Error("trying to request '%s', but daemon protocol %d.%d is too old (< 1.29) to request a derivation file",
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store.printStorePath(drvPath),
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GET_PROTOCOL_MAJOR(conn.version),
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GET_PROTOCOL_MINOR(conn.version));
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},
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[&](std::monostate) {
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throw Error("wanted to build a derivation that is itself a build product, but protocols do not support that. Try upgrading the Nix on the other end of this connection");
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},
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}, sOrDrvPath);
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}
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}
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KeyedBuildResult WorkerProto::Serialise<KeyedBuildResult>::read(const StoreDirConfig & store, WorkerProto::ReadConn conn)
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{
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auto path = WorkerProto::Serialise<DerivedPath>::read(store, conn);
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auto br = WorkerProto::Serialise<BuildResult>::read(store, conn);
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return KeyedBuildResult {
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std::move(br),
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/* .path = */ std::move(path),
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};
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}
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void WorkerProto::Serialise<KeyedBuildResult>::write(const StoreDirConfig & store, WorkerProto::WriteConn conn, const KeyedBuildResult & res)
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{
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WorkerProto::write(store, conn, res.path);
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WorkerProto::write(store, conn, static_cast<const BuildResult &>(res));
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}
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BuildResult WorkerProto::Serialise<BuildResult>::read(const StoreDirConfig & store, WorkerProto::ReadConn conn)
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{
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BuildResult res;
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res.status = static_cast<BuildResult::Status>(readInt(conn.from));
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conn.from >> res.errorMsg;
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if (GET_PROTOCOL_MINOR(conn.version) >= 29) {
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conn.from
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>> res.timesBuilt
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>> res.isNonDeterministic
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>> res.startTime
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>> res.stopTime;
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}
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if (GET_PROTOCOL_MINOR(conn.version) >= 37) {
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res.cpuUser = WorkerProto::Serialise<std::optional<std::chrono::microseconds>>::read(store, conn);
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res.cpuSystem = WorkerProto::Serialise<std::optional<std::chrono::microseconds>>::read(store, conn);
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}
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if (GET_PROTOCOL_MINOR(conn.version) >= 28) {
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auto builtOutputs = WorkerProto::Serialise<DrvOutputs>::read(store, conn);
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for (auto && [output, realisation] : builtOutputs)
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res.builtOutputs.insert_or_assign(
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std::move(output.outputName),
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std::move(realisation));
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}
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return res;
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}
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void WorkerProto::Serialise<BuildResult>::write(const StoreDirConfig & store, WorkerProto::WriteConn conn, const BuildResult & res)
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{
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conn.to
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<< res.status
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<< res.errorMsg;
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if (GET_PROTOCOL_MINOR(conn.version) >= 29) {
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conn.to
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<< res.timesBuilt
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<< res.isNonDeterministic
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<< res.startTime
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<< res.stopTime;
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}
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if (GET_PROTOCOL_MINOR(conn.version) >= 37) {
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WorkerProto::write(store, conn, res.cpuUser);
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WorkerProto::write(store, conn, res.cpuSystem);
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}
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if (GET_PROTOCOL_MINOR(conn.version) >= 28) {
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DrvOutputs builtOutputs;
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for (auto & [output, realisation] : res.builtOutputs)
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builtOutputs.insert_or_assign(realisation.id, realisation);
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WorkerProto::write(store, conn, builtOutputs);
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}
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}
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ValidPathInfo WorkerProto::Serialise<ValidPathInfo>::read(const StoreDirConfig & store, ReadConn conn)
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{
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auto path = WorkerProto::Serialise<StorePath>::read(store, conn);
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return ValidPathInfo {
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std::move(path),
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WorkerProto::Serialise<UnkeyedValidPathInfo>::read(store, conn),
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};
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}
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void WorkerProto::Serialise<ValidPathInfo>::write(const StoreDirConfig & store, WriteConn conn, const ValidPathInfo & pathInfo)
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{
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WorkerProto::write(store, conn, pathInfo.path);
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WorkerProto::write(store, conn, static_cast<const UnkeyedValidPathInfo &>(pathInfo));
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}
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UnkeyedValidPathInfo WorkerProto::Serialise<UnkeyedValidPathInfo>::read(const StoreDirConfig & store, ReadConn conn)
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{
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auto deriver = readString(conn.from);
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auto narHash = Hash::parseAny(readString(conn.from), HashAlgorithm::SHA256);
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UnkeyedValidPathInfo info(narHash);
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if (deriver != "") info.deriver = store.parseStorePath(deriver);
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info.references = WorkerProto::Serialise<StorePathSet>::read(store, conn);
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conn.from >> info.registrationTime >> info.narSize;
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if (GET_PROTOCOL_MINOR(conn.version) >= 16) {
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conn.from >> info.ultimate;
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info.sigs = readStrings<StringSet>(conn.from);
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info.ca = ContentAddress::parseOpt(readString(conn.from));
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}
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return info;
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}
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void WorkerProto::Serialise<UnkeyedValidPathInfo>::write(const StoreDirConfig & store, WriteConn conn, const UnkeyedValidPathInfo & pathInfo)
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{
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conn.to
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<< (pathInfo.deriver ? store.printStorePath(*pathInfo.deriver) : "")
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<< pathInfo.narHash.to_string(HashFormat::Base16, false);
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WorkerProto::write(store, conn, pathInfo.references);
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conn.to << pathInfo.registrationTime << pathInfo.narSize;
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if (GET_PROTOCOL_MINOR(conn.version) >= 16) {
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conn.to
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<< pathInfo.ultimate
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<< pathInfo.sigs
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<< renderContentAddress(pathInfo.ca);
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}
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}
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}
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