Nix/src/nix-env/user-env.cc
Robert Hensing 65255edc9b DerivationInfo -> PackageInfo
This does not yet resolve the coupling between packages and
derivations, but it makes the code more consistent with the
terminology, and it accentuates places where the coupling is
obvious, such as

         auto drvPath = packageInfo.queryDrvPath();
         if (!drvPath)
             throw Error("'%s' is not a derivation", what());

... which isn't wrong, and in my opinion, doesn't even look
wrong, because it just reflects the current logic.
However, I do like that we can now start to see in the code that
this coupling is perhaps a bit arbitrary.
After this rename, we can bring the DerivingPath concept into type
and start to lift this limitation.
2024-01-16 15:28:03 +01:00

176 lines
6.3 KiB
C++

#include "user-env.hh"
#include "derivations.hh"
#include "store-api.hh"
#include "path-with-outputs.hh"
#include "local-fs-store.hh"
#include "globals.hh"
#include "shared.hh"
#include "eval.hh"
#include "eval-inline.hh"
#include "profiles.hh"
#include "print-ambiguous.hh"
#include <limits>
namespace nix {
PackageInfos queryInstalled(EvalState & state, const Path & userEnv)
{
PackageInfos elems;
if (pathExists(userEnv + "/manifest.json"))
throw Error("profile '%s' is incompatible with 'nix-env'; please use 'nix profile' instead", userEnv);
auto manifestFile = userEnv + "/manifest.nix";
if (pathExists(manifestFile)) {
Value v;
state.evalFile(state.rootPath(CanonPath(manifestFile)).resolveSymlinks(), v);
Bindings & bindings(*state.allocBindings(0));
getDerivations(state, v, "", bindings, elems, false);
}
return elems;
}
bool createUserEnv(EvalState & state, PackageInfos & elems,
const Path & profile, bool keepDerivations,
const std::string & lockToken)
{
/* Build the components in the user environment, if they don't
exist already. */
std::vector<StorePathWithOutputs> drvsToBuild;
for (auto & i : elems)
if (auto drvPath = i.queryDrvPath())
drvsToBuild.push_back({*drvPath});
debug("building user environment dependencies");
state.store->buildPaths(
toDerivedPaths(drvsToBuild),
state.repair ? bmRepair : bmNormal);
/* Construct the whole top level derivation. */
StorePathSet references;
Value manifest;
state.mkList(manifest, elems.size());
size_t n = 0;
for (auto & i : elems) {
/* Create a pseudo-derivation containing the name, system,
output paths, and optionally the derivation path, as well
as the meta attributes. */
std::optional<StorePath> drvPath = keepDerivations ? i.queryDrvPath() : std::nullopt;
PackageInfo::Outputs outputs = i.queryOutputs(true, true);
StringSet metaNames = i.queryMetaNames();
auto attrs = state.buildBindings(7 + outputs.size());
attrs.alloc(state.sType).mkString("derivation");
attrs.alloc(state.sName).mkString(i.queryName());
auto system = i.querySystem();
if (!system.empty())
attrs.alloc(state.sSystem).mkString(system);
attrs.alloc(state.sOutPath).mkString(state.store->printStorePath(i.queryOutPath()));
if (drvPath)
attrs.alloc(state.sDrvPath).mkString(state.store->printStorePath(*drvPath));
// Copy each output meant for installation.
auto & vOutputs = attrs.alloc(state.sOutputs);
state.mkList(vOutputs, outputs.size());
for (const auto & [m, j] : enumerate(outputs)) {
(vOutputs.listElems()[m] = state.allocValue())->mkString(j.first);
auto outputAttrs = state.buildBindings(2);
outputAttrs.alloc(state.sOutPath).mkString(state.store->printStorePath(*j.second));
attrs.alloc(j.first).mkAttrs(outputAttrs);
/* This is only necessary when installing store paths, e.g.,
`nix-env -i /nix/store/abcd...-foo'. */
state.store->addTempRoot(*j.second);
state.store->ensurePath(*j.second);
references.insert(*j.second);
}
// Copy the meta attributes.
auto meta = state.buildBindings(metaNames.size());
for (auto & j : metaNames) {
Value * v = i.queryMeta(j);
if (!v) continue;
meta.insert(state.symbols.create(j), v);
}
attrs.alloc(state.sMeta).mkAttrs(meta);
(manifest.listElems()[n++] = state.allocValue())->mkAttrs(attrs);
if (drvPath) references.insert(*drvPath);
}
/* Also write a copy of the list of user environment elements to
the store; we need it for future modifications of the
environment. */
auto manifestFile = ({
std::ostringstream str;
printAmbiguous(manifest, state.symbols, str, nullptr, std::numeric_limits<int>::max());
// TODO with C++20 we can use str.view() instead and avoid copy.
std::string str2 = str.str();
StringSource source { str2 };
state.store->addToStoreFromDump(
source, "env-manifest.nix", TextIngestionMethod {}, HashAlgorithm::SHA256, references);
});
/* Get the environment builder expression. */
Value envBuilder;
state.eval(state.parseExprFromString(
#include "buildenv.nix.gen.hh"
, state.rootPath(CanonPath::root)), envBuilder);
/* Construct a Nix expression that calls the user environment
builder with the manifest as argument. */
auto attrs = state.buildBindings(3);
state.mkStorePathString(manifestFile, attrs.alloc("manifest"));
attrs.insert(state.symbols.create("derivations"), &manifest);
Value args;
args.mkAttrs(attrs);
Value topLevel;
topLevel.mkApp(&envBuilder, &args);
/* Evaluate it. */
debug("evaluating user environment builder");
state.forceValue(topLevel, topLevel.determinePos(noPos));
NixStringContext context;
Attr & aDrvPath(*topLevel.attrs->find(state.sDrvPath));
auto topLevelDrv = state.coerceToStorePath(aDrvPath.pos, *aDrvPath.value, context, "");
Attr & aOutPath(*topLevel.attrs->find(state.sOutPath));
auto topLevelOut = state.coerceToStorePath(aOutPath.pos, *aOutPath.value, context, "");
/* Realise the resulting store expression. */
debug("building user environment");
std::vector<StorePathWithOutputs> topLevelDrvs;
topLevelDrvs.push_back({topLevelDrv});
state.store->buildPaths(
toDerivedPaths(topLevelDrvs),
state.repair ? bmRepair : bmNormal);
/* Switch the current user environment to the output path. */
auto store2 = state.store.dynamic_pointer_cast<LocalFSStore>();
if (store2) {
PathLocks lock;
lockProfile(lock, profile);
Path lockTokenCur = optimisticLockProfile(profile);
if (lockToken != lockTokenCur) {
printInfo("profile '%1%' changed while we were busy; restarting", profile);
return false;
}
debug("switching to new user environment");
Path generation = createGeneration(*store2, profile, topLevelOut);
switchLink(profile, generation);
}
return true;
}
}