forked from lix-project/lix
Create EvalState::coerceToDerivedPath
This gives us some round trips to test. `EvalState::coerceToDerivedPathUnchecked` is a factored out helper just for unit testing.
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@ -2318,6 +2318,80 @@ StorePath EvalState::coerceToStorePath(const PosIdx pos, Value & v, NixStringCon
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}
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std::pair<DerivedPath, std::string_view> EvalState::coerceToDerivedPathUnchecked(const PosIdx pos, Value & v, std::string_view errorCtx)
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{
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NixStringContext context;
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auto s = forceString(v, context, pos, errorCtx);
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auto csize = context.size();
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if (csize != 1)
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error(
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"string '%s' has %d entries in its context. It should only have exactly one entry",
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s, csize)
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.withTrace(pos, errorCtx).debugThrow<EvalError>();
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auto derivedPath = std::visit(overloaded {
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[&](NixStringContextElem::Opaque && o) -> DerivedPath {
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return DerivedPath::Opaque {
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.path = std::move(o.path),
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};
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},
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[&](NixStringContextElem::DrvDeep &&) -> DerivedPath {
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error(
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"string '%s' has a context which refers to a complete source and binary closure. This is not supported at this time",
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s).withTrace(pos, errorCtx).debugThrow<EvalError>();
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},
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[&](NixStringContextElem::Built && b) -> DerivedPath {
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return DerivedPath::Built {
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.drvPath = std::move(b.drvPath),
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.outputs = OutputsSpec::Names { std::move(b.output) },
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};
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},
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}, ((NixStringContextElem &&) *context.begin()).raw());
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return {
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std::move(derivedPath),
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std::move(s),
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};
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}
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DerivedPath EvalState::coerceToDerivedPath(const PosIdx pos, Value & v, std::string_view errorCtx)
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{
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auto [derivedPath, s_] = coerceToDerivedPathUnchecked(pos, v, errorCtx);
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auto s = s_;
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std::visit(overloaded {
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[&](const DerivedPath::Opaque & o) {
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auto sExpected = store->printStorePath(o.path);
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if (s != sExpected)
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error(
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"path string '%s' has context with the different path '%s'",
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s, sExpected)
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.withTrace(pos, errorCtx).debugThrow<EvalError>();
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},
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[&](const DerivedPath::Built & b) {
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// TODO need derived path with single output to make this
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// total. Will add as part of RFC 92 work and then this is
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// cleaned up.
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auto output = *std::get<OutputsSpec::Names>(b.outputs).begin();
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auto drv = store->readDerivation(b.drvPath);
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auto i = drv.outputs.find(output);
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if (i == drv.outputs.end())
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throw Error("derivation '%s' does not have output '%s'", store->printStorePath(b.drvPath), output);
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auto optOutputPath = i->second.path(*store, drv.name, output);
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// This is testing for the case of CA derivations
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auto sExpected = optOutputPath
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? store->printStorePath(*optOutputPath)
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: downstreamPlaceholder(*store, b.drvPath, output);
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if (s != sExpected)
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error(
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"string '%s' has context with the output '%s' from derivation '%s', but the string is not the right placeholder for this derivation output. It should be '%s'",
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s, output, store->printStorePath(b.drvPath), sExpected)
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.withTrace(pos, errorCtx).debugThrow<EvalError>();
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}
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}, derivedPath.raw());
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return derivedPath;
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}
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bool EvalState::eqValues(Value & v1, Value & v2, const PosIdx pos, std::string_view errorCtx)
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{
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forceValue(v1, noPos);
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@ -21,6 +21,7 @@ namespace nix {
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class Store;
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class EvalState;
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class StorePath;
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struct DerivedPath;
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enum RepairFlag : bool;
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@ -473,6 +474,28 @@ public:
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*/
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StorePath coerceToStorePath(const PosIdx pos, Value & v, NixStringContext & context, std::string_view errorCtx);
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/**
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* Part of `coerceToDerivedPath()` without any store IO which is exposed for unit testing only.
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*/
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std::pair<DerivedPath, std::string_view> coerceToDerivedPathUnchecked(const PosIdx pos, Value & v, std::string_view errorCtx);
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/**
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* Coerce to `DerivedPath`.
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*
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* Must be a string which is either a literal store path or a
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* "placeholder (see `downstreamPlaceholder()`).
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*
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* Even more importantly, the string context must be exactly one
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* element, which is either a `NixStringContextElem::Opaque` or
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* `NixStringContextElem::Built`. (`NixStringContextEleme::DrvDeep`
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* is not permitted).
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*
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* The string is parsed based on the context --- the context is the
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* source of truth, and ultimately tells us what we want, and then
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* we ensure the string corresponds to it.
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*/
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DerivedPath coerceToDerivedPath(const PosIdx pos, Value & v, std::string_view errorCtx);
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public:
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/**
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65
src/libexpr/tests/derived-path.cc
Normal file
65
src/libexpr/tests/derived-path.cc
Normal file
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@ -0,0 +1,65 @@
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#include <nlohmann/json.hpp>
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#include <gtest/gtest.h>
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#include <rapidcheck/gtest.h>
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#include "tests/derived-path.hh"
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#include "tests/libexpr.hh"
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namespace nix {
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// Testing of trivial expressions
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class DerivedPathExpressionTest : public LibExprTest {};
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// FIXME: `RC_GTEST_FIXTURE_PROP` isn't calling `SetUpTestSuite` because it is
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// no a real fixture.
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//
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// See https://github.com/emil-e/rapidcheck/blob/master/doc/gtest.md#rc_gtest_fixture_propfixture-name-args
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TEST_F(DerivedPathExpressionTest, force_init)
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{
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}
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RC_GTEST_FIXTURE_PROP(
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DerivedPathExpressionTest,
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prop_opaque_path_round_trip,
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(const DerivedPath::Opaque & o))
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{
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auto * v = state.allocValue();
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state.mkStorePathString(o.path, *v);
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auto d = state.coerceToDerivedPath(noPos, *v, "");
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RC_ASSERT(DerivedPath { o } == d);
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}
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// TODO use DerivedPath::Built for parameter once it supports a single output
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// path only.
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RC_GTEST_FIXTURE_PROP(
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DerivedPathExpressionTest,
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prop_built_path_placeholder_round_trip,
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(const StorePath & drvPath, const StorePathName & outputName))
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{
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auto * v = state.allocValue();
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state.mkOutputString(*v, drvPath, outputName.name, std::nullopt);
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auto [d, _] = state.coerceToDerivedPathUnchecked(noPos, *v, "");
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DerivedPath::Built b {
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.drvPath = drvPath,
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.outputs = OutputsSpec::Names { outputName.name },
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};
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RC_ASSERT(DerivedPath { b } == d);
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}
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RC_GTEST_FIXTURE_PROP(
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DerivedPathExpressionTest,
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prop_built_path_out_path_round_trip,
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(const StorePath & drvPath, const StorePathName & outputName, const StorePath & outPath))
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{
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auto * v = state.allocValue();
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state.mkOutputString(*v, drvPath, outputName.name, outPath);
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auto [d, _] = state.coerceToDerivedPathUnchecked(noPos, *v, "");
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DerivedPath::Built b {
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.drvPath = drvPath,
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.outputs = OutputsSpec::Names { outputName.name },
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};
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RC_ASSERT(DerivedPath { b } == d);
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}
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} /* namespace nix */
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