mirror of
https://github.com/privatevoid-net/nix-super.git
synced 2024-11-16 03:06:17 +02:00
ea966a70fc
These are non-critical, so their behavior is ok to change. Dropping empty items is not needed and usually not expected.
472 lines
17 KiB
C++
472 lines
17 KiB
C++
#include <unordered_set>
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#include "derivations.hh"
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#include "parsed-derivations.hh"
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#include "globals.hh"
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#include "store-api.hh"
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#include "thread-pool.hh"
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#include "realisation.hh"
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#include "topo-sort.hh"
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#include "callback.hh"
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#include "closure.hh"
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#include "filetransfer.hh"
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#include "strings.hh"
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namespace nix {
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void Store::computeFSClosure(const StorePathSet & startPaths,
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StorePathSet & paths_, bool flipDirection, bool includeOutputs, bool includeDerivers)
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{
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std::function<std::set<StorePath>(const StorePath & path, std::future<ref<const ValidPathInfo>> &)> queryDeps;
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if (flipDirection)
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queryDeps = [&](const StorePath& path,
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std::future<ref<const ValidPathInfo>> & fut) {
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StorePathSet res;
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StorePathSet referrers;
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queryReferrers(path, referrers);
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for (auto& ref : referrers)
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if (ref != path)
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res.insert(ref);
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if (includeOutputs)
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for (auto& i : queryValidDerivers(path))
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res.insert(i);
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if (includeDerivers && path.isDerivation())
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for (auto& [_, maybeOutPath] : queryPartialDerivationOutputMap(path))
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if (maybeOutPath && isValidPath(*maybeOutPath))
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res.insert(*maybeOutPath);
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return res;
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};
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else
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queryDeps = [&](const StorePath& path,
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std::future<ref<const ValidPathInfo>> & fut) {
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StorePathSet res;
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auto info = fut.get();
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for (auto& ref : info->references)
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if (ref != path)
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res.insert(ref);
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if (includeOutputs && path.isDerivation())
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for (auto& [_, maybeOutPath] : queryPartialDerivationOutputMap(path))
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if (maybeOutPath && isValidPath(*maybeOutPath))
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res.insert(*maybeOutPath);
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if (includeDerivers && info->deriver && isValidPath(*info->deriver))
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res.insert(*info->deriver);
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return res;
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};
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computeClosure<StorePath>(
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startPaths, paths_,
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[&](const StorePath& path,
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std::function<void(std::promise<std::set<StorePath>>&)>
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processEdges) {
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std::promise<std::set<StorePath>> promise;
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std::function<void(std::future<ref<const ValidPathInfo>>)>
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getDependencies =
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[&](std::future<ref<const ValidPathInfo>> fut) {
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try {
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promise.set_value(queryDeps(path, fut));
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} catch (...) {
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promise.set_exception(std::current_exception());
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}
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};
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queryPathInfo(path, getDependencies);
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processEdges(promise);
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});
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}
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void Store::computeFSClosure(const StorePath & startPath,
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StorePathSet & paths_, bool flipDirection, bool includeOutputs, bool includeDerivers)
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{
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StorePathSet paths;
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paths.insert(startPath);
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computeFSClosure(paths, paths_, flipDirection, includeOutputs, includeDerivers);
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}
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const ContentAddress * getDerivationCA(const BasicDerivation & drv)
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{
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auto out = drv.outputs.find("out");
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if (out == drv.outputs.end())
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return nullptr;
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if (auto dof = std::get_if<DerivationOutput::CAFixed>(&out->second.raw)) {
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return &dof->ca;
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}
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return nullptr;
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}
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void Store::queryMissing(const std::vector<DerivedPath> & targets,
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StorePathSet & willBuild_, StorePathSet & willSubstitute_, StorePathSet & unknown_,
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uint64_t & downloadSize_, uint64_t & narSize_)
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{
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Activity act(*logger, lvlDebug, actUnknown, "querying info about missing paths");
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downloadSize_ = narSize_ = 0;
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// FIXME: make async.
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ThreadPool pool(fileTransferSettings.httpConnections);
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struct State
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{
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std::unordered_set<std::string> done;
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StorePathSet & unknown, & willSubstitute, & willBuild;
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uint64_t & downloadSize;
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uint64_t & narSize;
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};
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struct DrvState
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{
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size_t left;
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bool done = false;
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StorePathSet outPaths;
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DrvState(size_t left) : left(left) { }
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};
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Sync<State> state_(State{{}, unknown_, willSubstitute_, willBuild_, downloadSize_, narSize_});
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std::function<void(DerivedPath)> doPath;
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std::function<void(ref<SingleDerivedPath>, const DerivedPathMap<StringSet>::ChildNode &)> enqueueDerivedPaths;
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enqueueDerivedPaths = [&](ref<SingleDerivedPath> inputDrv, const DerivedPathMap<StringSet>::ChildNode & inputNode) {
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if (!inputNode.value.empty())
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pool.enqueue(std::bind(doPath, DerivedPath::Built { inputDrv, inputNode.value }));
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for (const auto & [outputName, childNode] : inputNode.childMap)
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enqueueDerivedPaths(
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make_ref<SingleDerivedPath>(SingleDerivedPath::Built { inputDrv, outputName }),
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childNode);
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};
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auto mustBuildDrv = [&](const StorePath & drvPath, const Derivation & drv) {
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{
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auto state(state_.lock());
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state->willBuild.insert(drvPath);
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}
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for (const auto & [inputDrv, inputNode] : drv.inputDrvs.map) {
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enqueueDerivedPaths(makeConstantStorePathRef(inputDrv), inputNode);
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}
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};
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auto checkOutput = [&](
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const StorePath & drvPath, ref<Derivation> drv, const StorePath & outPath, ref<Sync<DrvState>> drvState_)
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{
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if (drvState_->lock()->done) return;
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SubstitutablePathInfos infos;
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auto * cap = getDerivationCA(*drv);
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querySubstitutablePathInfos({
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{
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outPath,
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cap ? std::optional { *cap } : std::nullopt,
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},
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}, infos);
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if (infos.empty()) {
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drvState_->lock()->done = true;
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mustBuildDrv(drvPath, *drv);
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} else {
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{
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auto drvState(drvState_->lock());
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if (drvState->done) return;
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assert(drvState->left);
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drvState->left--;
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drvState->outPaths.insert(outPath);
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if (!drvState->left) {
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for (auto & path : drvState->outPaths)
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pool.enqueue(std::bind(doPath, DerivedPath::Opaque { path } ));
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}
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}
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}
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};
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doPath = [&](const DerivedPath & req) {
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{
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auto state(state_.lock());
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if (!state->done.insert(req.to_string(*this)).second) return;
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}
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std::visit(overloaded {
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[&](const DerivedPath::Built & bfd) {
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auto drvPathP = std::get_if<DerivedPath::Opaque>(&*bfd.drvPath);
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if (!drvPathP) {
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// TODO make work in this case.
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warn("Ignoring dynamic derivation %s while querying missing paths; not yet implemented", bfd.drvPath->to_string(*this));
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return;
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}
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auto & drvPath = drvPathP->path;
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if (!isValidPath(drvPath)) {
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// FIXME: we could try to substitute the derivation.
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auto state(state_.lock());
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state->unknown.insert(drvPath);
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return;
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}
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StorePathSet invalid;
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/* true for regular derivations, and CA derivations for which we
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have a trust mapping for all wanted outputs. */
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auto knownOutputPaths = true;
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for (auto & [outputName, pathOpt] : queryPartialDerivationOutputMap(drvPath)) {
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if (!pathOpt) {
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knownOutputPaths = false;
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break;
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}
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if (bfd.outputs.contains(outputName) && !isValidPath(*pathOpt))
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invalid.insert(*pathOpt);
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}
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if (knownOutputPaths && invalid.empty()) return;
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auto drv = make_ref<Derivation>(derivationFromPath(drvPath));
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ParsedDerivation parsedDrv(StorePath(drvPath), *drv);
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if (!knownOutputPaths && settings.useSubstitutes && parsedDrv.substitutesAllowed()) {
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experimentalFeatureSettings.require(Xp::CaDerivations);
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// If there are unknown output paths, attempt to find if the
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// paths are known to substituters through a realisation.
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auto outputHashes = staticOutputHashes(*this, *drv);
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knownOutputPaths = true;
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for (auto [outputName, hash] : outputHashes) {
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if (!bfd.outputs.contains(outputName))
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continue;
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bool found = false;
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for (auto &sub : getDefaultSubstituters()) {
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auto realisation = sub->queryRealisation({hash, outputName});
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if (!realisation)
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continue;
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found = true;
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if (!isValidPath(realisation->outPath))
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invalid.insert(realisation->outPath);
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break;
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}
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if (!found) {
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// Some paths did not have a realisation, this must be built.
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knownOutputPaths = false;
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break;
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}
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}
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}
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if (knownOutputPaths && settings.useSubstitutes && parsedDrv.substitutesAllowed()) {
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auto drvState = make_ref<Sync<DrvState>>(DrvState(invalid.size()));
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for (auto & output : invalid)
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pool.enqueue(std::bind(checkOutput, drvPath, drv, output, drvState));
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} else
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mustBuildDrv(drvPath, *drv);
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},
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[&](const DerivedPath::Opaque & bo) {
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if (isValidPath(bo.path)) return;
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SubstitutablePathInfos infos;
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querySubstitutablePathInfos({{bo.path, std::nullopt}}, infos);
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if (infos.empty()) {
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auto state(state_.lock());
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state->unknown.insert(bo.path);
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return;
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}
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auto info = infos.find(bo.path);
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assert(info != infos.end());
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{
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auto state(state_.lock());
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state->willSubstitute.insert(bo.path);
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state->downloadSize += info->second.downloadSize;
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state->narSize += info->second.narSize;
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}
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for (auto & ref : info->second.references)
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pool.enqueue(std::bind(doPath, DerivedPath::Opaque { ref }));
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},
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}, req.raw());
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};
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for (auto & path : targets)
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pool.enqueue(std::bind(doPath, path));
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pool.process();
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}
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StorePaths Store::topoSortPaths(const StorePathSet & paths)
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{
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return topoSort(paths,
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{[&](const StorePath & path) {
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try {
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return queryPathInfo(path)->references;
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} catch (InvalidPath &) {
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return StorePathSet();
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}
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}},
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{[&](const StorePath & path, const StorePath & parent) {
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return BuildError(
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"cycle detected in the references of '%s' from '%s'",
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printStorePath(path),
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printStorePath(parent));
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}});
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}
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std::map<DrvOutput, StorePath> drvOutputReferences(
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const std::set<Realisation> & inputRealisations,
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const StorePathSet & pathReferences)
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{
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std::map<DrvOutput, StorePath> res;
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for (const auto & input : inputRealisations) {
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if (pathReferences.count(input.outPath)) {
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res.insert({input.id, input.outPath});
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}
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}
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return res;
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}
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std::map<DrvOutput, StorePath> drvOutputReferences(
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Store & store,
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const Derivation & drv,
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const StorePath & outputPath,
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Store * evalStore_)
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{
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auto & evalStore = evalStore_ ? *evalStore_ : store;
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std::set<Realisation> inputRealisations;
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std::function<void(const StorePath &, const DerivedPathMap<StringSet>::ChildNode &)> accumRealisations;
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accumRealisations = [&](const StorePath & inputDrv, const DerivedPathMap<StringSet>::ChildNode & inputNode) {
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if (!inputNode.value.empty()) {
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auto outputHashes =
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staticOutputHashes(evalStore, evalStore.readDerivation(inputDrv));
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for (const auto & outputName : inputNode.value) {
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auto outputHash = get(outputHashes, outputName);
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if (!outputHash)
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throw Error(
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"output '%s' of derivation '%s' isn't realised", outputName,
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store.printStorePath(inputDrv));
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auto thisRealisation = store.queryRealisation(
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DrvOutput{*outputHash, outputName});
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if (!thisRealisation)
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throw Error(
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"output '%s' of derivation '%s' isn’t built", outputName,
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store.printStorePath(inputDrv));
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inputRealisations.insert(*thisRealisation);
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}
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}
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if (!inputNode.value.empty()) {
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auto d = makeConstantStorePathRef(inputDrv);
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for (const auto & [outputName, childNode] : inputNode.childMap) {
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SingleDerivedPath next = SingleDerivedPath::Built { d, outputName };
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accumRealisations(
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// TODO deep resolutions for dynamic derivations, issue #8947, would go here.
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resolveDerivedPath(store, next, evalStore_),
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childNode);
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}
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}
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};
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for (const auto & [inputDrv, inputNode] : drv.inputDrvs.map)
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accumRealisations(inputDrv, inputNode);
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auto info = store.queryPathInfo(outputPath);
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return drvOutputReferences(Realisation::closure(store, inputRealisations), info->references);
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}
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OutputPathMap resolveDerivedPath(Store & store, const DerivedPath::Built & bfd, Store * evalStore_)
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{
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auto drvPath = resolveDerivedPath(store, *bfd.drvPath, evalStore_);
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auto outputsOpt_ = store.queryPartialDerivationOutputMap(drvPath, evalStore_);
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auto outputsOpt = std::visit(overloaded {
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[&](const OutputsSpec::All &) {
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// Keep all outputs
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return std::move(outputsOpt_);
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},
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[&](const OutputsSpec::Names & names) {
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// Get just those mentioned by name
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std::map<std::string, std::optional<StorePath>> outputsOpt;
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for (auto & output : names) {
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auto * pOutputPathOpt = get(outputsOpt_, output);
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if (!pOutputPathOpt)
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throw Error(
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"the derivation '%s' doesn't have an output named '%s'",
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bfd.drvPath->to_string(store), output);
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outputsOpt.insert_or_assign(output, std::move(*pOutputPathOpt));
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}
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return outputsOpt;
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},
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}, bfd.outputs.raw);
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OutputPathMap outputs;
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for (auto & [outputName, outputPathOpt] : outputsOpt) {
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if (!outputPathOpt)
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throw MissingRealisation(bfd.drvPath->to_string(store), outputName);
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auto & outputPath = *outputPathOpt;
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outputs.insert_or_assign(outputName, outputPath);
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}
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return outputs;
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}
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StorePath resolveDerivedPath(Store & store, const SingleDerivedPath & req, Store * evalStore_)
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{
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auto & evalStore = evalStore_ ? *evalStore_ : store;
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return std::visit(overloaded {
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[&](const SingleDerivedPath::Opaque & bo) {
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return bo.path;
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},
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[&](const SingleDerivedPath::Built & bfd) {
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auto drvPath = resolveDerivedPath(store, *bfd.drvPath, evalStore_);
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auto outputPaths = evalStore.queryPartialDerivationOutputMap(drvPath, evalStore_);
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if (outputPaths.count(bfd.output) == 0)
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throw Error("derivation '%s' does not have an output named '%s'",
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store.printStorePath(drvPath), bfd.output);
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auto & optPath = outputPaths.at(bfd.output);
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if (!optPath)
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throw MissingRealisation(bfd.drvPath->to_string(store), bfd.output);
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return *optPath;
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},
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}, req.raw());
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}
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OutputPathMap resolveDerivedPath(Store & store, const DerivedPath::Built & bfd)
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{
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auto drvPath = resolveDerivedPath(store, *bfd.drvPath);
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auto outputMap = store.queryDerivationOutputMap(drvPath);
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auto outputsLeft = std::visit(overloaded {
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[&](const OutputsSpec::All &) {
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return StringSet {};
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},
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[&](const OutputsSpec::Names & names) {
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return static_cast<StringSet>(names);
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},
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}, bfd.outputs.raw);
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for (auto iter = outputMap.begin(); iter != outputMap.end();) {
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auto & outputName = iter->first;
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if (bfd.outputs.contains(outputName)) {
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outputsLeft.erase(outputName);
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++iter;
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} else {
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iter = outputMap.erase(iter);
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}
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}
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if (!outputsLeft.empty())
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throw Error("derivation '%s' does not have an outputs %s",
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store.printStorePath(drvPath),
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dropEmptyInitThenConcatStringsSep(", ", quoteStrings(std::get<OutputsSpec::Names>(bfd.outputs.raw))));
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return outputMap;
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}
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}
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