forked from lix-project/lix
Liberate checkDerivationOutputs
from LocalStore
Make it instead a method on `Derivation` that can work with any store. We will need this for a CLI command to create a derivation.
This commit is contained in:
parent
b200784cec
commit
4e9f32f993
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@ -890,6 +890,66 @@ std::optional<BasicDerivation> Derivation::tryResolve(
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}
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}
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void Derivation::checkInvariants(Store & store, const StorePath & drvPath) const
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{
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assert(drvPath.isDerivation());
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std::string drvName(drvPath.name());
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drvName = drvName.substr(0, drvName.size() - drvExtension.size());
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if (drvName != name) {
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throw Error("Derivation '%s' has name '%s' which does not match its path", store.printStorePath(drvPath), name);
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}
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auto envHasRightPath = [&](const StorePath & actual, const std::string & varName)
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{
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auto j = env.find(varName);
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if (j == env.end() || store.parseStorePath(j->second) != actual)
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throw Error("derivation '%s' has incorrect environment variable '%s', should be '%s'",
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store.printStorePath(drvPath), varName, store.printStorePath(actual));
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};
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// Don't need the answer, but do this anyways to assert is proper
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// combination. The code below is more general and naturally allows
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// combinations that are currently prohibited.
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type();
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std::optional<DrvHash> hashesModulo;
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for (auto & i : outputs) {
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std::visit(overloaded {
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[&](const DerivationOutput::InputAddressed & doia) {
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if (!hashesModulo) {
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// somewhat expensive so we do lazily
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hashesModulo = hashDerivationModulo(store, *this, true);
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}
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auto currentOutputHash = get(hashesModulo->hashes, i.first);
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if (!currentOutputHash)
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throw Error("derivation '%s' has unexpected output '%s' (local-store / hashesModulo) named '%s'",
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store.printStorePath(drvPath), store.printStorePath(doia.path), i.first);
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StorePath recomputed = store.makeOutputPath(i.first, *currentOutputHash, drvName);
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if (doia.path != recomputed)
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throw Error("derivation '%s' has incorrect output '%s', should be '%s'",
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store.printStorePath(drvPath), store.printStorePath(doia.path), store.printStorePath(recomputed));
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envHasRightPath(doia.path, i.first);
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},
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[&](const DerivationOutput::CAFixed & dof) {
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StorePath path = store.makeFixedOutputPath(dof.hash.method, dof.hash.hash, drvName);
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envHasRightPath(path, i.first);
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},
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[&](const DerivationOutput::CAFloating &) {
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/* Nothing to check */
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},
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[&](const DerivationOutput::Deferred &) {
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/* Nothing to check */
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},
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[&](const DerivationOutput::Impure &) {
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/* Nothing to check */
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},
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}, i.second.raw());
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}
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}
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const Hash impureOutputHash = hashString(htSHA256, "impure");
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const Hash impureOutputHash = hashString(htSHA256, "impure");
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nlohmann::json DerivationOutput::toJSON(
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nlohmann::json DerivationOutput::toJSON(
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@ -333,6 +333,14 @@ struct Derivation : BasicDerivation
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Store & store,
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Store & store,
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const std::map<std::pair<StorePath, std::string>, StorePath> & inputDrvOutputs) const;
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const std::map<std::pair<StorePath, std::string>, StorePath> & inputDrvOutputs) const;
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/* Check that the derivation is valid and does not present any
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illegal states.
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This is mainly a matter of checking the outputs, where our C++
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representation supports all sorts of combinations we do not yet
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allow. */
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void checkInvariants(Store & store, const StorePath & drvPath) const;
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Derivation() = default;
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Derivation() = default;
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Derivation(const BasicDerivation & bd) : BasicDerivation(bd) { }
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Derivation(const BasicDerivation & bd) : BasicDerivation(bd) { }
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Derivation(BasicDerivation && bd) : BasicDerivation(std::move(bd)) { }
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Derivation(BasicDerivation && bd) : BasicDerivation(std::move(bd)) { }
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@ -710,62 +710,6 @@ void canonicalisePathMetaData(const Path & path,
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canonicalisePathMetaData(path, uidRange, inodesSeen);
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canonicalisePathMetaData(path, uidRange, inodesSeen);
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}
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}
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void LocalStore::checkDerivationOutputs(const StorePath & drvPath, const Derivation & drv)
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{
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assert(drvPath.isDerivation());
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std::string drvName(drvPath.name());
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drvName = drvName.substr(0, drvName.size() - drvExtension.size());
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auto envHasRightPath = [&](const StorePath & actual, const std::string & varName)
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{
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auto j = drv.env.find(varName);
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if (j == drv.env.end() || parseStorePath(j->second) != actual)
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throw Error("derivation '%s' has incorrect environment variable '%s', should be '%s'",
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printStorePath(drvPath), varName, printStorePath(actual));
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};
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// Don't need the answer, but do this anyways to assert is proper
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// combination. The code below is more general and naturally allows
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// combinations that are currently prohibited.
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drv.type();
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std::optional<DrvHash> hashesModulo;
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for (auto & i : drv.outputs) {
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std::visit(overloaded {
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[&](const DerivationOutput::InputAddressed & doia) {
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if (!hashesModulo) {
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// somewhat expensive so we do lazily
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hashesModulo = hashDerivationModulo(*this, drv, true);
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}
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auto currentOutputHash = get(hashesModulo->hashes, i.first);
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if (!currentOutputHash)
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throw Error("derivation '%s' has unexpected output '%s' (local-store / hashesModulo) named '%s'",
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printStorePath(drvPath), printStorePath(doia.path), i.first);
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StorePath recomputed = makeOutputPath(i.first, *currentOutputHash, drvName);
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if (doia.path != recomputed)
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throw Error("derivation '%s' has incorrect output '%s', should be '%s'",
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printStorePath(drvPath), printStorePath(doia.path), printStorePath(recomputed));
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envHasRightPath(doia.path, i.first);
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},
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[&](const DerivationOutput::CAFixed & dof) {
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StorePath path = makeFixedOutputPath(dof.hash.method, dof.hash.hash, drvName);
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envHasRightPath(path, i.first);
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},
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[&](const DerivationOutput::CAFloating &) {
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/* Nothing to check */
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},
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[&](const DerivationOutput::Deferred &) {
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/* Nothing to check */
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},
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[&](const DerivationOutput::Impure &) {
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/* Nothing to check */
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},
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}, i.second.raw());
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}
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}
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void LocalStore::registerDrvOutput(const Realisation & info, CheckSigsFlag checkSigs)
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void LocalStore::registerDrvOutput(const Realisation & info, CheckSigsFlag checkSigs)
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{
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{
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experimentalFeatureSettings.require(Xp::CaDerivations);
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experimentalFeatureSettings.require(Xp::CaDerivations);
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@ -876,7 +820,7 @@ uint64_t LocalStore::addValidPath(State & state,
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derivations). Note that if this throws an error, then the
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derivations). Note that if this throws an error, then the
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DB transaction is rolled back, so the path validity
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DB transaction is rolled back, so the path validity
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registration above is undone. */
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registration above is undone. */
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if (checkOutputs) checkDerivationOutputs(info.path, drv);
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if (checkOutputs) drv.checkInvariants(*this, info.path);
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for (auto & i : drv.outputsAndOptPaths(*this)) {
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for (auto & i : drv.outputsAndOptPaths(*this)) {
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/* Floating CA derivations have indeterminate output paths until
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/* Floating CA derivations have indeterminate output paths until
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@ -1175,8 +1119,7 @@ void LocalStore::registerValidPaths(const ValidPathInfos & infos)
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for (auto & [_, i] : infos)
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for (auto & [_, i] : infos)
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if (i.path.isDerivation()) {
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if (i.path.isDerivation()) {
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// FIXME: inefficient; we already loaded the derivation in addValidPath().
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// FIXME: inefficient; we already loaded the derivation in addValidPath().
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checkDerivationOutputs(i.path,
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readInvalidDerivation(i.path).checkInvariants(*this, i.path);
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readInvalidDerivation(i.path));
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}
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}
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/* Do a topological sort of the paths. This will throw an
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/* Do a topological sort of the paths. This will throw an
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@ -270,8 +270,6 @@ private:
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std::pair<Path, AutoCloseFD> createTempDirInStore();
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std::pair<Path, AutoCloseFD> createTempDirInStore();
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void checkDerivationOutputs(const StorePath & drvPath, const Derivation & drv);
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typedef std::unordered_set<ino_t> InodeHash;
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typedef std::unordered_set<ino_t> InodeHash;
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InodeHash loadInodeHash();
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InodeHash loadInodeHash();
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