forked from lix-project/lix
Merge pull request #4839 from NixOS/ca/gracefully-handle-duplicate-realisations
Gracefully handle duplicate realisations
This commit is contained in:
commit
0a535dd5ac
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@ -17,6 +17,13 @@ DrvOutputSubstitutionGoal::DrvOutputSubstitutionGoal(const DrvOutput& id, Worker
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void DrvOutputSubstitutionGoal::init()
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{
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trace("init");
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/* If the derivation already exists, we’re done */
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if (worker.store.queryRealisation(id)) {
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amDone(ecSuccess);
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return;
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}
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subs = settings.useSubstitutes ? getDefaultSubstituters() : std::list<ref<Store>>();
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tryNext();
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}
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@ -53,9 +60,23 @@ void DrvOutputSubstitutionGoal::tryNext()
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return;
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}
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for (const auto & [drvOutputDep, _] : outputInfo->dependentRealisations) {
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if (drvOutputDep != id) {
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addWaitee(worker.makeDrvOutputSubstitutionGoal(drvOutputDep));
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for (const auto & [depId, depPath] : outputInfo->dependentRealisations) {
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if (depId != id) {
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if (auto localOutputInfo = worker.store.queryRealisation(depId);
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localOutputInfo && localOutputInfo->outPath != depPath) {
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warn(
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"substituter '%s' has an incompatible realisation for '%s', ignoring.\n"
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"Local: %s\n"
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"Remote: %s",
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sub->getUri(),
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depId.to_string(),
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worker.store.printStorePath(localOutputInfo->outPath),
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worker.store.printStorePath(depPath)
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);
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tryNext();
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return;
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}
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addWaitee(worker.makeDrvOutputSubstitutionGoal(depId));
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}
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}
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@ -53,6 +53,7 @@ struct LocalStore::State::Stmts {
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SQLiteStmt InvalidatePath;
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SQLiteStmt AddDerivationOutput;
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SQLiteStmt RegisterRealisedOutput;
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SQLiteStmt UpdateRealisedOutput;
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SQLiteStmt QueryValidDerivers;
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SQLiteStmt QueryDerivationOutputs;
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SQLiteStmt QueryRealisedOutput;
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@ -345,6 +346,15 @@ LocalStore::LocalStore(const Params & params)
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values (?, ?, (select id from ValidPaths where path = ?), ?)
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;
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)");
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state->stmts->UpdateRealisedOutput.create(state->db,
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R"(
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update Realisations
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set signatures = ?
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where
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drvPath = ? and
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outputName = ?
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;
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)");
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state->stmts->QueryRealisedOutput.create(state->db,
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R"(
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select Realisations.id, Output.path, Realisations.signatures from Realisations
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@ -710,14 +720,46 @@ void LocalStore::registerDrvOutput(const Realisation & info)
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settings.requireExperimentalFeature("ca-derivations");
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retrySQLite<void>([&]() {
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auto state(_state.lock());
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state->stmts->RegisterRealisedOutput.use()
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(info.id.strHash())
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(info.id.outputName)
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(printStorePath(info.outPath))
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(concatStringsSep(" ", info.signatures))
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.exec();
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if (auto oldR = queryRealisation_(*state, info.id)) {
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if (info.isCompatibleWith(*oldR)) {
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auto combinedSignatures = oldR->signatures;
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combinedSignatures.insert(info.signatures.begin(),
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info.signatures.end());
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state->stmts->UpdateRealisedOutput.use()
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(concatStringsSep(" ", combinedSignatures))
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(info.id.strHash())
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(info.id.outputName)
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.exec();
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} else {
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throw Error("Trying to register a realisation of '%s', but we already "
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"have another one locally.\n"
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"Local: %s\n"
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"Remote: %s",
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info.id.to_string(),
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printStorePath(oldR->outPath),
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printStorePath(info.outPath)
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);
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}
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} else {
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state->stmts->RegisterRealisedOutput.use()
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(info.id.strHash())
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(info.id.outputName)
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(printStorePath(info.outPath))
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(concatStringsSep(" ", info.signatures))
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.exec();
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}
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uint64_t myId = state->db.getLastInsertedRowId();
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for (auto & [outputId, _] : info.dependentRealisations) {
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for (auto & [outputId, depPath] : info.dependentRealisations) {
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auto localRealisation = queryRealisationCore_(*state, outputId);
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if (!localRealisation)
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throw Error("unable to register the derivation '%s' as it "
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"depends on the non existent '%s'",
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info.id.to_string(), outputId.to_string());
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if (localRealisation->second.outPath != depPath)
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throw Error("unable to register the derivation '%s' as it "
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"depends on a realisation of '%s' that doesn’t"
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"match what we have locally",
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info.id.to_string(), outputId.to_string());
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state->stmts->AddRealisationReference.use()
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(myId)
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(outputId.strHash())
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@ -1734,46 +1776,68 @@ void LocalStore::createUser(const std::string & userName, uid_t userId)
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}
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}
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std::optional<const Realisation> LocalStore::queryRealisation(
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const DrvOutput& id) {
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typedef std::optional<const Realisation> Ret;
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return retrySQLite<Ret>([&]() -> Ret {
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auto state(_state.lock());
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auto useQueryRealisedOutput(state->stmts->QueryRealisedOutput.use()
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std::optional<std::pair<int64_t, Realisation>> LocalStore::queryRealisationCore_(
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LocalStore::State & state,
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const DrvOutput & id)
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{
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auto useQueryRealisedOutput(
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state.stmts->QueryRealisedOutput.use()
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(id.strHash())
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(id.outputName));
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if (!useQueryRealisedOutput.next())
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return std::nullopt;
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auto realisationDbId = useQueryRealisedOutput.getInt(0);
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auto outputPath = parseStorePath(useQueryRealisedOutput.getStr(1));
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auto signatures =
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tokenizeString<StringSet>(useQueryRealisedOutput.getStr(2));
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if (!useQueryRealisedOutput.next())
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return std::nullopt;
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auto realisationDbId = useQueryRealisedOutput.getInt(0);
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auto outputPath = parseStorePath(useQueryRealisedOutput.getStr(1));
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auto signatures =
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tokenizeString<StringSet>(useQueryRealisedOutput.getStr(2));
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std::map<DrvOutput, StorePath> dependentRealisations;
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auto useRealisationRefs(
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state->stmts->QueryRealisationReferences.use()
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(realisationDbId));
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while (useRealisationRefs.next()) {
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auto depHash = useRealisationRefs.getStr(0);
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auto depOutputName = useRealisationRefs.getStr(1);
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auto useQueryRealisedOutput(state->stmts->QueryRealisedOutput.use()
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(depHash)
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(depOutputName));
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assert(useQueryRealisedOutput.next());
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auto outputPath = parseStorePath(useQueryRealisedOutput.getStr(1));
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auto depId = DrvOutput { Hash::parseAnyPrefixed(depHash), depOutputName };
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dependentRealisations.insert({depId, outputPath});
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}
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return Ret{Realisation{
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return {{
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realisationDbId,
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Realisation{
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.id = id,
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.outPath = outputPath,
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.signatures = signatures,
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.dependentRealisations = dependentRealisations,
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}};
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});
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}
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}};
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}
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std::optional<const Realisation> LocalStore::queryRealisation_(
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LocalStore::State & state,
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const DrvOutput & id)
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{
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auto maybeCore = queryRealisationCore_(state, id);
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if (!maybeCore)
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return std::nullopt;
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auto [realisationDbId, res] = *maybeCore;
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std::map<DrvOutput, StorePath> dependentRealisations;
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auto useRealisationRefs(
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state.stmts->QueryRealisationReferences.use()
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(realisationDbId));
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while (useRealisationRefs.next()) {
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auto depId = DrvOutput {
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Hash::parseAnyPrefixed(useRealisationRefs.getStr(0)),
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useRealisationRefs.getStr(1),
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};
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auto dependentRealisation = queryRealisationCore_(state, depId);
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assert(dependentRealisation); // Enforced by the db schema
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auto outputPath = dependentRealisation->second.outPath;
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dependentRealisations.insert({depId, outputPath});
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}
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res.dependentRealisations = dependentRealisations;
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return { res };
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}
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std::optional<const Realisation>
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LocalStore::queryRealisation(const DrvOutput & id)
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{
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return retrySQLite<std::optional<const Realisation>>([&]() {
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auto state(_state.lock());
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return queryRealisation_(*state, id);
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});
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}
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FixedOutputHash LocalStore::hashCAPath(
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const FileIngestionMethod & method, const HashType & hashType,
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@ -203,6 +203,8 @@ public:
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void registerDrvOutput(const Realisation & info, CheckSigsFlag checkSigs) override;
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void cacheDrvOutputMapping(State & state, const uint64_t deriver, const string & outputName, const StorePath & output);
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std::optional<const Realisation> queryRealisation_(State & state, const DrvOutput & id);
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std::optional<std::pair<int64_t, Realisation>> queryRealisationCore_(State & state, const DrvOutput & id);
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std::optional<const Realisation> queryRealisation(const DrvOutput&) override;
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private:
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@ -140,6 +140,16 @@ StorePath RealisedPath::path() const {
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return std::visit([](auto && arg) { return arg.getPath(); }, raw);
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}
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bool Realisation::isCompatibleWith(const Realisation & other) const
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{
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assert (id == other.id);
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if (outPath == other.outPath) {
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assert(dependentRealisations == other.dependentRealisations);
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return true;
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}
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return false;
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}
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void RealisedPath::closure(
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Store& store,
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const RealisedPath::Set& startPaths,
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@ -47,6 +47,8 @@ struct Realisation {
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static std::set<Realisation> closure(Store &, const std::set<Realisation> &);
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static void closure(Store &, const std::set<Realisation> &, std::set<Realisation>& res);
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bool isCompatibleWith(const Realisation & other) const;
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StorePath getPath() const { return outPath; }
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GENERATE_CMP(Realisation, me->id, me->outPath);
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26
tests/ca/duplicate-realisation-in-closure.sh
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26
tests/ca/duplicate-realisation-in-closure.sh
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@ -0,0 +1,26 @@
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source ./common.sh
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sed -i 's/experimental-features .*/& ca-derivations ca-references/' "$NIX_CONF_DIR"/nix.conf
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export REMOTE_STORE_DIR="$TEST_ROOT/remote_store"
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export REMOTE_STORE="file://$REMOTE_STORE_DIR"
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rm -rf $REMOTE_STORE_DIR
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clearStore
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# Build dep1 and push that to the binary cache.
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# This entails building (and pushing) current-time.
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nix copy --to "$REMOTE_STORE" -f nondeterministic.nix dep1
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clearStore
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sleep 2 # To make sure that `$(date)` will be different
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# Build dep2.
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# As we’ve cleared the cache, we’ll have to rebuild current-time. And because
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# the current time isn’t the same as before, this will yield a new (different)
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# realisation
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nix build -f nondeterministic.nix dep2
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# Build something that depends both on dep1 and dep2.
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# If everything goes right, we should rebuild dep2 rather than fetch it from
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# the cache (because that would mean duplicating `current-time` in the closure),
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# and have `dep1 == dep2`.
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nix build --substituters "$REMOTE_STORE" -f nondeterministic.nix toplevel --no-require-sigs
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35
tests/ca/nondeterministic.nix
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35
tests/ca/nondeterministic.nix
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@ -0,0 +1,35 @@
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with import ./config.nix;
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let mkCADerivation = args: mkDerivation ({
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__contentAddressed = true;
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outputHashMode = "recursive";
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outputHashAlgo = "sha256";
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} // args);
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in
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rec {
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currentTime = mkCADerivation {
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name = "current-time";
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buildCommand = ''
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mkdir $out
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echo $(date) > $out/current-time
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'';
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};
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dep = seed: mkCADerivation {
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name = "dep";
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inherit seed;
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buildCommand = ''
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echo ${currentTime} > $out
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'';
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};
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dep1 = dep 1;
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dep2 = dep 2;
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toplevel = mkCADerivation {
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name = "toplevel";
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buildCommand = ''
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test ${dep1} == ${dep2}
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touch $out
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'';
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};
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}
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@ -47,6 +47,7 @@ nix_tests = \
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compute-levels.sh \
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ca/build.sh \
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ca/build-with-garbage-path.sh \
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ca/duplicate-realisation-in-closure.sh \
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ca/substitute.sh \
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ca/signatures.sh \
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ca/nix-shell.sh \
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