Merge pull request #1313 from obsidiansystems/split-buildRemote
Split the `buildRemote` function, take 2
This commit is contained in:
commit
a5d44b60ea
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@ -32,6 +32,8 @@ static void append(Strings & dst, const Strings & src)
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dst.insert(dst.end(), src.begin(), src.end());
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}
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namespace nix::build_remote {
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static Strings extraStoreArgs(std::string & machine)
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{
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Strings result;
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@ -107,33 +109,27 @@ static void openConnection(Machine::ptr machine, Path tmpDir, int stderrFD, Chil
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}
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static void copyClosureTo(std::timed_mutex & sendMutex, Store & destStore,
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FdSource & from, FdSink & to, ServeProto::Version remoteVersion, const StorePathSet & paths,
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static void copyClosureTo(
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Machine::Connection & conn,
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Store & destStore,
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const StorePathSet & paths,
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bool useSubstitutes = false)
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{
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StorePathSet closure;
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destStore.computeFSClosure(paths, closure);
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ServeProto::WriteConn wconn {
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.to = to,
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.version = remoteVersion,
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};
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ServeProto::ReadConn rconn {
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.from = from,
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.version = remoteVersion,
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};
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/* Send the "query valid paths" command with the "lock" option
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enabled. This prevents a race where the remote host
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garbage-collect paths that are already there. Optionally, ask
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the remote host to substitute missing paths. */
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// FIXME: substitute output pollutes our build log
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to << ServeProto::Command::QueryValidPaths << 1 << useSubstitutes;
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ServeProto::write(destStore, wconn, closure);
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to.flush();
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conn.to << ServeProto::Command::QueryValidPaths << 1 << useSubstitutes;
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ServeProto::write(destStore, conn, closure);
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conn.to.flush();
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/* Get back the set of paths that are already valid on the remote
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host. */
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auto present = ServeProto::Serialise<StorePathSet>::read(destStore, rconn);
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auto present = ServeProto::Serialise<StorePathSet>::read(destStore, conn);
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if (present.size() == closure.size()) return;
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@ -145,20 +141,20 @@ static void copyClosureTo(std::timed_mutex & sendMutex, Store & destStore,
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printMsg(lvlDebug, "sending %d missing paths", missing.size());
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std::unique_lock<std::timed_mutex> sendLock(sendMutex,
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std::unique_lock<std::timed_mutex> sendLock(conn.machine->state->sendLock,
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std::chrono::seconds(600));
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to << ServeProto::Command::ImportPaths;
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destStore.exportPaths(missing, to);
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to.flush();
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conn.to << ServeProto::Command::ImportPaths;
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destStore.exportPaths(missing, conn.to);
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conn.to.flush();
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if (readInt(from) != 1)
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if (readInt(conn.from) != 1)
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throw Error("remote machine failed to import closure");
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}
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// FIXME: use Store::topoSortPaths().
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StorePaths reverseTopoSortPaths(const std::map<StorePath, ValidPathInfo> & paths)
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static StorePaths reverseTopoSortPaths(const std::map<StorePath, ValidPathInfo> & paths)
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{
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StorePaths sorted;
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StorePathSet visited;
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@ -186,24 +182,311 @@ StorePaths reverseTopoSortPaths(const std::map<StorePath, ValidPathInfo> & paths
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return sorted;
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}
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static std::pair<Path, AutoCloseFD> openLogFile(const std::string & logDir, const StorePath & drvPath)
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{
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std::string base(drvPath.to_string());
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auto logFile = logDir + "/" + std::string(base, 0, 2) + "/" + std::string(base, 2);
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createDirs(dirOf(logFile));
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AutoCloseFD logFD = open(logFile.c_str(), O_CREAT | O_TRUNC | O_WRONLY, 0666);
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if (!logFD) throw SysError("creating log file ‘%s’", logFile);
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return {std::move(logFile), std::move(logFD)};
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}
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/**
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* @param conn is not fully initialized; it is this functions job to set
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* the `remoteVersion` field after the handshake is completed.
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* Therefore, no `ServeProto::Serialize` functions can be used until
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* that field is set.
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*/
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static void handshake(Machine::Connection & conn, unsigned int repeats)
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{
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conn.to << SERVE_MAGIC_1 << 0x206;
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conn.to.flush();
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unsigned int magic = readInt(conn.from);
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if (magic != SERVE_MAGIC_2)
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throw Error("protocol mismatch with ‘nix-store --serve’ on ‘%1%’", conn.machine->sshName);
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conn.remoteVersion = readInt(conn.from);
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// Now `conn` is initialized.
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if (GET_PROTOCOL_MAJOR(conn.remoteVersion) != 0x200)
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throw Error("unsupported ‘nix-store --serve’ protocol version on ‘%1%’", conn.machine->sshName);
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if (GET_PROTOCOL_MINOR(conn.remoteVersion) < 3 && repeats > 0)
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throw Error("machine ‘%1%’ does not support repeating a build; please upgrade it to Nix 1.12", conn.machine->sshName);
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}
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static BasicDerivation sendInputs(
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State & state,
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Step & step,
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Store & localStore,
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Store & destStore,
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Machine::Connection & conn,
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unsigned int & overhead,
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counter & nrStepsWaiting,
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counter & nrStepsCopyingTo
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)
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{
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BasicDerivation basicDrv(*step.drv);
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for (const auto & [drvPath, node] : step.drv->inputDrvs.map) {
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auto drv2 = localStore.readDerivation(drvPath);
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for (auto & name : node.value) {
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if (auto i = get(drv2.outputs, name)) {
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auto outPath = i->path(localStore, drv2.name, name);
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basicDrv.inputSrcs.insert(*outPath);
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}
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}
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}
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/* Ensure that the inputs exist in the destination store. This is
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a no-op for regular stores, but for the binary cache store,
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this will copy the inputs to the binary cache from the local
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store. */
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if (&localStore != &destStore) {
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copyClosure(localStore, destStore,
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step.drv->inputSrcs,
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NoRepair, NoCheckSigs, NoSubstitute);
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}
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{
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auto mc1 = std::make_shared<MaintainCount<counter>>(nrStepsWaiting);
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mc1.reset();
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MaintainCount<counter> mc2(nrStepsCopyingTo);
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printMsg(lvlDebug, "sending closure of ‘%s’ to ‘%s’",
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localStore.printStorePath(step.drvPath), conn.machine->sshName);
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auto now1 = std::chrono::steady_clock::now();
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/* Copy the input closure. */
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if (conn.machine->isLocalhost()) {
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StorePathSet closure;
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destStore.computeFSClosure(basicDrv.inputSrcs, closure);
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copyPaths(destStore, localStore, closure, NoRepair, NoCheckSigs, NoSubstitute);
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} else {
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copyClosureTo(conn, destStore, basicDrv.inputSrcs, true);
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}
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auto now2 = std::chrono::steady_clock::now();
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overhead += std::chrono::duration_cast<std::chrono::milliseconds>(now2 - now1).count();
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}
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return basicDrv;
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}
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static BuildResult performBuild(
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Machine::Connection & conn,
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Store & localStore,
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StorePath drvPath,
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const BasicDerivation & drv,
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const State::BuildOptions & options,
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counter & nrStepsBuilding
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)
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{
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BuildResult result;
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conn.to << ServeProto::Command::BuildDerivation << localStore.printStorePath(drvPath);
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writeDerivation(conn.to, localStore, drv);
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conn.to << options.maxSilentTime << options.buildTimeout;
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if (GET_PROTOCOL_MINOR(conn.remoteVersion) >= 2)
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conn.to << options.maxLogSize;
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if (GET_PROTOCOL_MINOR(conn.remoteVersion) >= 3) {
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conn.to
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<< options.repeats // == build-repeat
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<< options.enforceDeterminism;
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}
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conn.to.flush();
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result.startTime = time(0);
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{
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MaintainCount<counter> mc(nrStepsBuilding);
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result.status = (BuildResult::Status)readInt(conn.from);
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}
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result.stopTime = time(0);
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result.errorMsg = readString(conn.from);
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if (GET_PROTOCOL_MINOR(conn.remoteVersion) >= 3) {
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result.timesBuilt = readInt(conn.from);
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result.isNonDeterministic = readInt(conn.from);
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auto start = readInt(conn.from);
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auto stop = readInt(conn.from);
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if (start && start) {
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/* Note: this represents the duration of a single
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round, rather than all rounds. */
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result.startTime = start;
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result.stopTime = stop;
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}
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}
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if (GET_PROTOCOL_MINOR(conn.remoteVersion) >= 6) {
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ServeProto::Serialise<DrvOutputs>::read(localStore, conn);
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}
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return result;
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}
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static std::map<StorePath, ValidPathInfo> queryPathInfos(
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Machine::Connection & conn,
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Store & localStore,
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StorePathSet & outputs,
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size_t & totalNarSize
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)
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{
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/* Get info about each output path. */
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std::map<StorePath, ValidPathInfo> infos;
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conn.to << ServeProto::Command::QueryPathInfos;
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ServeProto::write(localStore, conn, outputs);
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conn.to.flush();
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while (true) {
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auto storePathS = readString(conn.from);
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if (storePathS == "") break;
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auto deriver = readString(conn.from); // deriver
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auto references = ServeProto::Serialise<StorePathSet>::read(localStore, conn);
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readLongLong(conn.from); // download size
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auto narSize = readLongLong(conn.from);
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auto narHash = Hash::parseAny(readString(conn.from), htSHA256);
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auto ca = ContentAddress::parseOpt(readString(conn.from));
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readStrings<StringSet>(conn.from); // sigs
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ValidPathInfo info(localStore.parseStorePath(storePathS), narHash);
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assert(outputs.count(info.path));
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info.references = references;
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info.narSize = narSize;
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totalNarSize += info.narSize;
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info.narHash = narHash;
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info.ca = ca;
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if (deriver != "")
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info.deriver = localStore.parseStorePath(deriver);
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infos.insert_or_assign(info.path, info);
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}
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return infos;
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}
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static void copyPathFromRemote(
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Machine::Connection & conn,
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NarMemberDatas & narMembers,
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Store & localStore,
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Store & destStore,
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const ValidPathInfo & info
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)
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{
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/* Receive the NAR from the remote and add it to the
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destination store. Meanwhile, extract all the info from the
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NAR that getBuildOutput() needs. */
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auto source2 = sinkToSource([&](Sink & sink)
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{
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/* Note: we should only send the command to dump the store
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path to the remote if the NAR is actually going to get read
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by the destination store, which won't happen if this path
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is already valid on the destination store. Since this
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lambda function only gets executed if someone tries to read
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from source2, we will send the command from here rather
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than outside the lambda. */
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conn.to << ServeProto::Command::DumpStorePath << localStore.printStorePath(info.path);
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conn.to.flush();
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TeeSource tee(conn.from, sink);
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extractNarData(tee, localStore.printStorePath(info.path), narMembers);
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});
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destStore.addToStore(info, *source2, NoRepair, NoCheckSigs);
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}
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static void copyPathsFromRemote(
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Machine::Connection & conn,
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NarMemberDatas & narMembers,
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Store & localStore,
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Store & destStore,
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const std::map<StorePath, ValidPathInfo> & infos
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)
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{
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auto pathsSorted = reverseTopoSortPaths(infos);
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for (auto & path : pathsSorted) {
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auto & info = infos.find(path)->second;
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copyPathFromRemote(conn, narMembers, localStore, destStore, info);
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}
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}
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}
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/* using namespace nix::build_remote; */
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void RemoteResult::updateWithBuildResult(const nix::BuildResult & buildResult)
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{
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startTime = buildResult.startTime;
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stopTime = buildResult.stopTime;
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timesBuilt = buildResult.timesBuilt;
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errorMsg = buildResult.errorMsg;
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isNonDeterministic = buildResult.isNonDeterministic;
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switch ((BuildResult::Status) buildResult.status) {
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case BuildResult::Built:
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stepStatus = bsSuccess;
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break;
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case BuildResult::Substituted:
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case BuildResult::AlreadyValid:
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stepStatus = bsSuccess;
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isCached = true;
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break;
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case BuildResult::PermanentFailure:
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stepStatus = bsFailed;
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canCache = true;
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errorMsg = "";
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break;
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case BuildResult::InputRejected:
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case BuildResult::OutputRejected:
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stepStatus = bsFailed;
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canCache = true;
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break;
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case BuildResult::TransientFailure:
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stepStatus = bsFailed;
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canRetry = true;
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errorMsg = "";
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break;
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case BuildResult::TimedOut:
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stepStatus = bsTimedOut;
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errorMsg = "";
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break;
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case BuildResult::MiscFailure:
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stepStatus = bsAborted;
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canRetry = true;
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break;
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case BuildResult::LogLimitExceeded:
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stepStatus = bsLogLimitExceeded;
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break;
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case BuildResult::NotDeterministic:
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stepStatus = bsNotDeterministic;
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canRetry = false;
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canCache = true;
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break;
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default:
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stepStatus = bsAborted;
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break;
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}
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}
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void State::buildRemote(ref<Store> destStore,
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Machine::ptr machine, Step::ptr step,
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unsigned int maxSilentTime, unsigned int buildTimeout, unsigned int repeats,
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const BuildOptions & buildOptions,
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RemoteResult & result, std::shared_ptr<ActiveStep> activeStep,
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std::function<void(StepState)> updateStep,
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NarMemberDatas & narMembers)
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{
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assert(BuildResult::TimedOut == 8);
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std::string base(step->drvPath.to_string());
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result.logFile = logDir + "/" + std::string(base, 0, 2) + "/" + std::string(base, 2);
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AutoDelete autoDelete(result.logFile, false);
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createDirs(dirOf(result.logFile));
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AutoCloseFD logFD = open(result.logFile.c_str(), O_CREAT | O_TRUNC | O_WRONLY, 0666);
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if (!logFD) throw SysError("creating log file ‘%s’", result.logFile);
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auto [logFile, logFD] = build_remote::openLogFile(logDir, step->drvPath);
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AutoDelete logFileDel(logFile, false);
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result.logFile = logFile;
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nix::Path tmpDir = createTempDir();
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AutoDelete tmpDirDel(tmpDir, true);
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|
@ -214,7 +497,7 @@ void State::buildRemote(ref<Store> destStore,
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// FIXME: rewrite to use Store.
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Child child;
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openConnection(machine, tmpDir, logFD.get(), child);
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build_remote::openConnection(machine, tmpDir, logFD.get(), child);
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{
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auto activeStepState(activeStep->state_.lock());
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|
@ -234,45 +517,25 @@ void State::buildRemote(ref<Store> destStore,
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process. Meh. */
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});
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FdSource from(child.from.get());
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FdSink to(child.to.get());
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Machine::Connection conn {
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.from = child.from.get(),
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.to = child.to.get(),
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.machine = machine,
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};
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Finally updateStats([&]() {
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bytesReceived += from.read;
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bytesSent += to.written;
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bytesReceived += conn.from.read;
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bytesSent += conn.to.written;
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});
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/* Handshake. */
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ServeProto::Version remoteVersion;
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|
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try {
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to << SERVE_MAGIC_1 << 0x206;
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||||
to.flush();
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||||
|
||||
unsigned int magic = readInt(from);
|
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if (magic != SERVE_MAGIC_2)
|
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throw Error("protocol mismatch with ‘nix-store --serve’ on ‘%1%’", machine->sshName);
|
||||
remoteVersion = readInt(from);
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if (GET_PROTOCOL_MAJOR(remoteVersion) != 0x200)
|
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throw Error("unsupported ‘nix-store --serve’ protocol version on ‘%1%’", machine->sshName);
|
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if (GET_PROTOCOL_MINOR(remoteVersion) < 3 && repeats > 0)
|
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throw Error("machine ‘%1%’ does not support repeating a build; please upgrade it to Nix 1.12", machine->sshName);
|
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|
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build_remote::handshake(conn, buildOptions.repeats);
|
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} catch (EndOfFile & e) {
|
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child.pid.wait();
|
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std::string s = chomp(readFile(result.logFile));
|
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throw Error("cannot connect to ‘%1%’: %2%", machine->sshName, s);
|
||||
}
|
||||
|
||||
ServeProto::ReadConn rconn {
|
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.from = from,
|
||||
.version = remoteVersion,
|
||||
};
|
||||
ServeProto::WriteConn wconn {
|
||||
.to = to,
|
||||
.version = remoteVersion,
|
||||
};
|
||||
|
||||
{
|
||||
auto info(machine->state->connectInfo.lock());
|
||||
info->consecutiveFailures = 0;
|
||||
|
@ -284,62 +547,12 @@ void State::buildRemote(ref<Store> destStore,
|
|||
copy the immediate sources of the derivation and the required
|
||||
outputs of the input derivations. */
|
||||
updateStep(ssSendingInputs);
|
||||
BasicDerivation resolvedDrv = build_remote::sendInputs(*this, *step, *localStore, *destStore, conn, result.overhead, nrStepsWaiting, nrStepsCopyingTo);
|
||||
|
||||
StorePathSet inputs;
|
||||
BasicDerivation basicDrv(*step->drv);
|
||||
|
||||
for (auto & p : step->drv->inputSrcs)
|
||||
inputs.insert(p);
|
||||
|
||||
for (auto & [drvPath, node] : step->drv->inputDrvs.map) {
|
||||
auto drv2 = localStore->readDerivation(drvPath);
|
||||
for (auto & name : node.value) {
|
||||
if (auto i = get(drv2.outputs, name)) {
|
||||
auto outPath = i->path(*localStore, drv2.name, name);
|
||||
inputs.insert(*outPath);
|
||||
basicDrv.inputSrcs.insert(*outPath);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/* Ensure that the inputs exist in the destination store. This is
|
||||
a no-op for regular stores, but for the binary cache store,
|
||||
this will copy the inputs to the binary cache from the local
|
||||
store. */
|
||||
if (localStore != std::shared_ptr<Store>(destStore)) {
|
||||
copyClosure(*localStore, *destStore,
|
||||
step->drv->inputSrcs,
|
||||
NoRepair, NoCheckSigs, NoSubstitute);
|
||||
}
|
||||
|
||||
{
|
||||
auto mc1 = std::make_shared<MaintainCount<counter>>(nrStepsWaiting);
|
||||
mc1.reset();
|
||||
MaintainCount<counter> mc2(nrStepsCopyingTo);
|
||||
|
||||
printMsg(lvlDebug, "sending closure of ‘%s’ to ‘%s’",
|
||||
localStore->printStorePath(step->drvPath), machine->sshName);
|
||||
|
||||
auto now1 = std::chrono::steady_clock::now();
|
||||
|
||||
/* Copy the input closure. */
|
||||
if (machine->isLocalhost()) {
|
||||
StorePathSet closure;
|
||||
destStore->computeFSClosure(inputs, closure);
|
||||
copyPaths(*destStore, *localStore, closure, NoRepair, NoCheckSigs, NoSubstitute);
|
||||
} else {
|
||||
copyClosureTo(machine->state->sendLock, *destStore, from, to, remoteVersion, inputs, true);
|
||||
}
|
||||
|
||||
auto now2 = std::chrono::steady_clock::now();
|
||||
|
||||
result.overhead += std::chrono::duration_cast<std::chrono::milliseconds>(now2 - now1).count();
|
||||
}
|
||||
|
||||
autoDelete.cancel();
|
||||
logFileDel.cancel();
|
||||
|
||||
/* Truncate the log to get rid of messages about substitutions
|
||||
etc. on the remote system. */
|
||||
etc. on the remote system. */
|
||||
if (lseek(logFD.get(), SEEK_SET, 0) != 0)
|
||||
throw SysError("seeking to the start of log file ‘%s’", result.logFile);
|
||||
|
||||
|
@ -355,85 +568,17 @@ void State::buildRemote(ref<Store> destStore,
|
|||
|
||||
updateStep(ssBuilding);
|
||||
|
||||
to << ServeProto::Command::BuildDerivation << localStore->printStorePath(step->drvPath);
|
||||
writeDerivation(to, *localStore, basicDrv);
|
||||
to << maxSilentTime << buildTimeout;
|
||||
if (GET_PROTOCOL_MINOR(remoteVersion) >= 2)
|
||||
to << maxLogSize;
|
||||
if (GET_PROTOCOL_MINOR(remoteVersion) >= 3) {
|
||||
to << repeats // == build-repeat
|
||||
<< step->isDeterministic; // == enforce-determinism
|
||||
}
|
||||
to.flush();
|
||||
BuildResult buildResult = build_remote::performBuild(
|
||||
conn,
|
||||
*localStore,
|
||||
step->drvPath,
|
||||
resolvedDrv,
|
||||
buildOptions,
|
||||
nrStepsBuilding
|
||||
);
|
||||
|
||||
result.startTime = time(0);
|
||||
int res;
|
||||
{
|
||||
MaintainCount<counter> mc(nrStepsBuilding);
|
||||
res = readInt(from);
|
||||
}
|
||||
result.stopTime = time(0);
|
||||
result.updateWithBuildResult(buildResult);
|
||||
|
||||
result.errorMsg = readString(from);
|
||||
if (GET_PROTOCOL_MINOR(remoteVersion) >= 3) {
|
||||
result.timesBuilt = readInt(from);
|
||||
result.isNonDeterministic = readInt(from);
|
||||
auto start = readInt(from);
|
||||
auto stop = readInt(from);
|
||||
if (start && start) {
|
||||
/* Note: this represents the duration of a single
|
||||
round, rather than all rounds. */
|
||||
result.startTime = start;
|
||||
result.stopTime = stop;
|
||||
}
|
||||
}
|
||||
if (GET_PROTOCOL_MINOR(remoteVersion) >= 6) {
|
||||
ServeProto::Serialise<DrvOutputs>::read(*localStore, rconn);
|
||||
}
|
||||
switch ((BuildResult::Status) res) {
|
||||
case BuildResult::Built:
|
||||
result.stepStatus = bsSuccess;
|
||||
break;
|
||||
case BuildResult::Substituted:
|
||||
case BuildResult::AlreadyValid:
|
||||
result.stepStatus = bsSuccess;
|
||||
result.isCached = true;
|
||||
break;
|
||||
case BuildResult::PermanentFailure:
|
||||
result.stepStatus = bsFailed;
|
||||
result.canCache = true;
|
||||
result.errorMsg = "";
|
||||
break;
|
||||
case BuildResult::InputRejected:
|
||||
case BuildResult::OutputRejected:
|
||||
result.stepStatus = bsFailed;
|
||||
result.canCache = true;
|
||||
break;
|
||||
case BuildResult::TransientFailure:
|
||||
result.stepStatus = bsFailed;
|
||||
result.canRetry = true;
|
||||
result.errorMsg = "";
|
||||
break;
|
||||
case BuildResult::TimedOut:
|
||||
result.stepStatus = bsTimedOut;
|
||||
result.errorMsg = "";
|
||||
break;
|
||||
case BuildResult::MiscFailure:
|
||||
result.stepStatus = bsAborted;
|
||||
result.canRetry = true;
|
||||
break;
|
||||
case BuildResult::LogLimitExceeded:
|
||||
result.stepStatus = bsLogLimitExceeded;
|
||||
break;
|
||||
case BuildResult::NotDeterministic:
|
||||
result.stepStatus = bsNotDeterministic;
|
||||
result.canRetry = false;
|
||||
result.canCache = true;
|
||||
break;
|
||||
default:
|
||||
result.stepStatus = bsAborted;
|
||||
break;
|
||||
}
|
||||
if (result.stepStatus != bsSuccess) return;
|
||||
|
||||
result.errorMsg = "";
|
||||
|
@ -461,33 +606,8 @@ void State::buildRemote(ref<Store> destStore,
|
|||
outputs.insert(*i.second.second);
|
||||
}
|
||||
|
||||
/* Get info about each output path. */
|
||||
std::map<StorePath, ValidPathInfo> infos;
|
||||
size_t totalNarSize = 0;
|
||||
to << ServeProto::Command::QueryPathInfos;
|
||||
ServeProto::write(*localStore, wconn, outputs);
|
||||
to.flush();
|
||||
while (true) {
|
||||
auto storePathS = readString(from);
|
||||
if (storePathS == "") break;
|
||||
auto deriver = readString(from); // deriver
|
||||
auto references = ServeProto::Serialise<StorePathSet>::read(*localStore, rconn);
|
||||
readLongLong(from); // download size
|
||||
auto narSize = readLongLong(from);
|
||||
auto narHash = Hash::parseAny(readString(from), htSHA256);
|
||||
auto ca = ContentAddress::parseOpt(readString(from));
|
||||
readStrings<StringSet>(from); // sigs
|
||||
ValidPathInfo info(localStore->parseStorePath(storePathS), narHash);
|
||||
assert(outputs.count(info.path));
|
||||
info.references = references;
|
||||
info.narSize = narSize;
|
||||
totalNarSize += info.narSize;
|
||||
info.narHash = narHash;
|
||||
info.ca = ca;
|
||||
if (deriver != "")
|
||||
info.deriver = localStore->parseStorePath(deriver);
|
||||
infos.insert_or_assign(info.path, info);
|
||||
}
|
||||
auto infos = build_remote::queryPathInfos(conn, *localStore, outputs, totalNarSize);
|
||||
|
||||
if (totalNarSize > maxOutputSize) {
|
||||
result.stepStatus = bsNarSizeLimitExceeded;
|
||||
|
@ -498,33 +618,7 @@ void State::buildRemote(ref<Store> destStore,
|
|||
printMsg(lvlDebug, "copying outputs of ‘%s’ from ‘%s’ (%d bytes)",
|
||||
localStore->printStorePath(step->drvPath), machine->sshName, totalNarSize);
|
||||
|
||||
auto pathsSorted = reverseTopoSortPaths(infos);
|
||||
|
||||
for (auto & path : pathsSorted) {
|
||||
auto & info = infos.find(path)->second;
|
||||
|
||||
/* Receive the NAR from the remote and add it to the
|
||||
destination store. Meanwhile, extract all the info from the
|
||||
NAR that getBuildOutput() needs. */
|
||||
auto source2 = sinkToSource([&](Sink & sink)
|
||||
{
|
||||
/* Note: we should only send the command to dump the store
|
||||
path to the remote if the NAR is actually going to get read
|
||||
by the destination store, which won't happen if this path
|
||||
is already valid on the destination store. Since this
|
||||
lambda function only gets executed if someone tries to read
|
||||
from source2, we will send the command from here rather
|
||||
than outside the lambda. */
|
||||
to << ServeProto::Command::DumpStorePath << localStore->printStorePath(path);
|
||||
to.flush();
|
||||
|
||||
TeeSource tee(from, sink);
|
||||
extractNarData(tee, localStore->printStorePath(path), narMembers);
|
||||
});
|
||||
|
||||
destStore->addToStore(info, *source2, NoRepair, NoCheckSigs);
|
||||
}
|
||||
|
||||
build_remote::copyPathsFromRemote(conn, narMembers, *localStore, *destStore, infos);
|
||||
auto now2 = std::chrono::steady_clock::now();
|
||||
|
||||
result.overhead += std::chrono::duration_cast<std::chrono::milliseconds>(now2 - now1).count();
|
||||
|
|
|
@ -98,8 +98,10 @@ State::StepResult State::doBuildStep(nix::ref<Store> destStore,
|
|||
it). */
|
||||
BuildID buildId;
|
||||
std::optional<StorePath> buildDrvPath;
|
||||
unsigned int maxSilentTime, buildTimeout;
|
||||
unsigned int repeats = step->isDeterministic ? 1 : 0;
|
||||
BuildOptions buildOptions;
|
||||
buildOptions.repeats = step->isDeterministic ? 1 : 0;
|
||||
buildOptions.maxLogSize = maxLogSize;
|
||||
buildOptions.enforceDeterminism = step->isDeterministic;
|
||||
|
||||
auto conn(dbPool.get());
|
||||
|
||||
|
@ -134,18 +136,18 @@ State::StepResult State::doBuildStep(nix::ref<Store> destStore,
|
|||
{
|
||||
auto i = jobsetRepeats.find(std::make_pair(build2->projectName, build2->jobsetName));
|
||||
if (i != jobsetRepeats.end())
|
||||
repeats = std::max(repeats, i->second);
|
||||
buildOptions.repeats = std::max(buildOptions.repeats, i->second);
|
||||
}
|
||||
}
|
||||
if (!build) build = *dependents.begin();
|
||||
|
||||
buildId = build->id;
|
||||
buildDrvPath = build->drvPath;
|
||||
maxSilentTime = build->maxSilentTime;
|
||||
buildTimeout = build->buildTimeout;
|
||||
buildOptions.maxSilentTime = build->maxSilentTime;
|
||||
buildOptions.buildTimeout = build->buildTimeout;
|
||||
|
||||
printInfo("performing step ‘%s’ %d times on ‘%s’ (needed by build %d and %d others)",
|
||||
localStore->printStorePath(step->drvPath), repeats + 1, machine->sshName, buildId, (dependents.size() - 1));
|
||||
localStore->printStorePath(step->drvPath), buildOptions.repeats + 1, machine->sshName, buildId, (dependents.size() - 1));
|
||||
}
|
||||
|
||||
if (!buildOneDone)
|
||||
|
@ -206,7 +208,7 @@ State::StepResult State::doBuildStep(nix::ref<Store> destStore,
|
|||
|
||||
try {
|
||||
/* FIXME: referring builds may have conflicting timeouts. */
|
||||
buildRemote(destStore, machine, step, maxSilentTime, buildTimeout, repeats, result, activeStep, updateStep, narMembers);
|
||||
buildRemote(destStore, machine, step, buildOptions, result, activeStep, updateStep, narMembers);
|
||||
} catch (Error & e) {
|
||||
if (activeStep->state_.lock()->cancelled) {
|
||||
printInfo("marking step %d of build %d as cancelled", stepNr, buildId);
|
||||
|
|
|
@ -21,6 +21,7 @@
|
|||
#include "store-api.hh"
|
||||
#include "sync.hh"
|
||||
#include "nar-extractor.hh"
|
||||
#include "serve-protocol.hh"
|
||||
|
||||
|
||||
typedef unsigned int BuildID;
|
||||
|
@ -78,6 +79,8 @@ struct RemoteResult
|
|||
{
|
||||
return stepStatus == bsCachedFailure ? bsFailed : stepStatus;
|
||||
}
|
||||
|
||||
void updateWithBuildResult(const nix::BuildResult &);
|
||||
};
|
||||
|
||||
|
||||
|
@ -297,6 +300,32 @@ struct Machine
|
|||
std::regex r("^(ssh://|ssh-ng://)?localhost$");
|
||||
return std::regex_search(sshName, r);
|
||||
}
|
||||
|
||||
// A connection to a machine
|
||||
struct Connection {
|
||||
nix::FdSource from;
|
||||
nix::FdSink to;
|
||||
nix::ServeProto::Version remoteVersion;
|
||||
|
||||
// Backpointer to the machine
|
||||
ptr machine;
|
||||
|
||||
operator nix::ServeProto::ReadConn ()
|
||||
{
|
||||
return {
|
||||
.from = from,
|
||||
.version = remoteVersion,
|
||||
};
|
||||
}
|
||||
|
||||
operator nix::ServeProto::WriteConn ()
|
||||
{
|
||||
return {
|
||||
.to = to,
|
||||
.version = remoteVersion,
|
||||
};
|
||||
}
|
||||
};
|
||||
};
|
||||
|
||||
|
||||
|
@ -459,6 +488,12 @@ private:
|
|||
public:
|
||||
State(std::optional<std::string> metricsAddrOpt);
|
||||
|
||||
struct BuildOptions {
|
||||
unsigned int maxSilentTime, buildTimeout, repeats;
|
||||
size_t maxLogSize;
|
||||
bool enforceDeterminism;
|
||||
};
|
||||
|
||||
private:
|
||||
|
||||
nix::MaintainCount<counter> startDbUpdate();
|
||||
|
@ -543,8 +578,7 @@ private:
|
|||
|
||||
void buildRemote(nix::ref<nix::Store> destStore,
|
||||
Machine::ptr machine, Step::ptr step,
|
||||
unsigned int maxSilentTime, unsigned int buildTimeout,
|
||||
unsigned int repeats,
|
||||
const BuildOptions & buildOptions,
|
||||
RemoteResult & result, std::shared_ptr<ActiveStep> activeStep,
|
||||
std::function<void(StepState)> updateStep,
|
||||
NarMemberDatas & narMembers);
|
||||
|
|
Loading…
Reference in a new issue