forked from lix-project/lix
Create Derivation::fromJSON
And test, of course
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@ -3,6 +3,7 @@
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#include <variant>
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#include "hash.hh"
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#include "comparator.hh"
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namespace nix {
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@ -30,6 +31,8 @@ struct TextHash {
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* Hash of the contents of the text/file.
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*/
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Hash hash;
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GENERATE_CMP(TextHash, me->hash);
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};
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/**
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@ -46,6 +49,8 @@ struct FixedOutputHash {
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Hash hash;
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std::string printMethodAlgo() const;
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GENERATE_CMP(FixedOutputHash, me->method, me->hash);
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};
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/**
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@ -889,6 +889,7 @@ std::optional<BasicDerivation> Derivation::tryResolve(
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return resolved;
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}
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const Hash impureOutputHash = hashString(htSHA256, "impure");
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nlohmann::json DerivationOutput::toJSON(
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@ -916,6 +917,73 @@ nlohmann::json DerivationOutput::toJSON(
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return res;
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}
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DerivationOutput DerivationOutput::fromJSON(
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const Store & store, std::string_view drvName, std::string_view outputName,
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const nlohmann::json & _json)
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{
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std::set<std::string_view> keys;
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auto json = (std::map<std::string, nlohmann::json>) _json;
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for (const auto & [key, _] : json)
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keys.insert(key);
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auto methodAlgo = [&]() -> std::pair<FileIngestionMethod, HashType> {
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std::string hashAlgo = json["hashAlgo"];
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auto method = FileIngestionMethod::Flat;
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if (hashAlgo.substr(0, 2) == "r:") {
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method = FileIngestionMethod::Recursive;
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hashAlgo = hashAlgo.substr(2);
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}
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auto hashType = parseHashType(hashAlgo);
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return { method, hashType };
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};
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if (keys == (std::set<std::string_view> { "path" })) {
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return DerivationOutput::InputAddressed {
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.path = store.parseStorePath((std::string) json["path"]),
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};
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}
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else if (keys == (std::set<std::string_view> { "path", "hashAlgo", "hash" })) {
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auto [method, hashType] = methodAlgo();
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auto dof = DerivationOutput::CAFixed {
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.hash = {
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.method = method,
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.hash = Hash::parseNonSRIUnprefixed((std::string) json["hash"], hashType),
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},
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};
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if (dof.path(store, drvName, outputName) != store.parseStorePath((std::string) json["path"]))
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throw Error("Path doesn't match derivation output");
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return dof;
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}
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else if (keys == (std::set<std::string_view> { "hashAlgo" })) {
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auto [method, hashType] = methodAlgo();
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return DerivationOutput::CAFloating {
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.method = method,
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.hashType = hashType,
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};
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}
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else if (keys == (std::set<std::string_view> { })) {
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return DerivationOutput::Deferred {};
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}
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else if (keys == (std::set<std::string_view> { "hashAlgo", "impure" })) {
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auto [method, hashType] = methodAlgo();
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return DerivationOutput::Impure {
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.method = method,
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.hashType = hashType,
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};
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}
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else {
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throw Error("invalid JSON for derivation output");
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}
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}
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nlohmann::json Derivation::toJSON(const Store & store) const
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{
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nlohmann::json res = nlohmann::json::object();
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@ -950,4 +1018,41 @@ nlohmann::json Derivation::toJSON(const Store & store) const
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return res;
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}
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Derivation Derivation::fromJSON(
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const Store & store, std::string_view drvName,
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const nlohmann::json & json)
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{
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Derivation res;
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{
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auto & outputsObj = json["outputs"];
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for (auto & [outputName, output] : outputsObj.items()) {
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res.outputs.insert_or_assign(
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outputName,
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DerivationOutput::fromJSON(store, drvName, outputName, output));
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}
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}
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{
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auto & inputsList = json["inputSrcs"];
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for (auto & input : inputsList)
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res.inputSrcs.insert(store.parseStorePath(static_cast<const std::string &>(input)));
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}
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{
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auto & inputDrvsObj = json["inputDrvs"];
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for (auto & [inputDrvPath, inputOutputs] : inputDrvsObj.items())
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res.inputDrvs[store.parseStorePath(inputDrvPath)] =
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static_cast<const StringSet &>(inputOutputs);
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}
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res.platform = json["system"];
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res.builder = json["builder"];
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res.args = json["args"];
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res.env = json["env"];
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return res;
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}
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}
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@ -7,6 +7,7 @@
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#include "content-address.hh"
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#include "repair-flag.hh"
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#include "sync.hh"
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#include "comparator.hh"
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#include <map>
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#include <variant>
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@ -24,6 +25,8 @@ class Store;
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struct DerivationOutputInputAddressed
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{
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StorePath path;
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GENERATE_CMP(DerivationOutputInputAddressed, me->path);
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};
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/**
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@ -44,6 +47,8 @@ struct DerivationOutputCAFixed
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* @param outputName The name of this output.
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*/
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StorePath path(const Store & store, std::string_view drvName, std::string_view outputName) const;
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GENERATE_CMP(DerivationOutputCAFixed, me->hash);
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};
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/**
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@ -62,13 +67,17 @@ struct DerivationOutputCAFloating
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* How the serialization will be hashed
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*/
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HashType hashType;
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GENERATE_CMP(DerivationOutputCAFloating, me->method, me->hashType);
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};
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/**
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* Input-addressed output which depends on a (CA) derivation whose hash
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* isn't known yet.
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*/
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struct DerivationOutputDeferred {};
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struct DerivationOutputDeferred {
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GENERATE_CMP(DerivationOutputDeferred);
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};
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/**
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* Impure output which is moved to a content-addressed location (like
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@ -85,6 +94,8 @@ struct DerivationOutputImpure
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* How the serialization will be hashed
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*/
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HashType hashType;
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GENERATE_CMP(DerivationOutputImpure, me->method, me->hashType);
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};
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typedef std::variant<
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@ -125,6 +136,11 @@ struct DerivationOutput : _DerivationOutputRaw
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const Store & store,
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std::string_view drvName,
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std::string_view outputName) const;
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static DerivationOutput fromJSON(
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const Store & store,
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std::string_view drvName,
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std::string_view outputName,
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const nlohmann::json & json);
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};
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typedef std::map<std::string, DerivationOutput> DerivationOutputs;
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@ -273,6 +289,15 @@ struct BasicDerivation
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DerivationOutputsAndOptPaths outputsAndOptPaths(const Store & store) const;
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static std::string_view nameFromPath(const StorePath & storePath);
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GENERATE_CMP(BasicDerivation,
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me->outputs,
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me->inputSrcs,
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me->platform,
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me->builder,
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me->args,
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me->env,
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me->name);
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};
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struct Derivation : BasicDerivation
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@ -313,6 +338,14 @@ struct Derivation : BasicDerivation
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Derivation(BasicDerivation && bd) : BasicDerivation(std::move(bd)) { }
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nlohmann::json toJSON(const Store & store) const;
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static Derivation fromJSON(
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const Store & store,
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std::string_view drvName,
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const nlohmann::json & json);
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GENERATE_CMP(Derivation,
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static_cast<const BasicDerivation &>(*me),
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me->inputDrvs);
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};
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@ -11,15 +11,29 @@ class DerivationTest : public LibStoreTest
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{
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};
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#define TEST_JSON(TYPE, NAME, STR, VAL, ...) \
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TEST_F(DerivationTest, TYPE ## _ ## NAME ## _to_json) { \
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#define TEST_JSON(NAME, STR, VAL, DRV_NAME, OUTPUT_NAME) \
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TEST_F(DerivationTest, DerivationOutput_ ## NAME ## _to_json) { \
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using nlohmann::literals::operator "" _json; \
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ASSERT_EQ( \
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STR ## _json, \
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(TYPE { VAL }).toJSON(*store __VA_OPT__(,) __VA_ARGS__)); \
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(DerivationOutput { VAL }).toJSON( \
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*store, \
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DRV_NAME, \
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OUTPUT_NAME)); \
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} \
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\
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TEST_F(DerivationTest, DerivationOutput_ ## NAME ## _from_json) { \
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using nlohmann::literals::operator "" _json; \
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ASSERT_EQ( \
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DerivationOutput { VAL }, \
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DerivationOutput::fromJSON( \
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*store, \
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DRV_NAME, \
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OUTPUT_NAME, \
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STR ## _json)); \
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}
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TEST_JSON(DerivationOutput, inputAddressed,
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TEST_JSON(inputAddressed,
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R"({
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"path": "/nix/store/c015dhfh5l0lp6wxyvdn7bmwhbbr6hr9-drv-name-output-name"
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})",
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}),
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"drv-name", "output-name")
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TEST_JSON(DerivationOutput, caFixed,
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TEST_JSON(caFixed,
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R"({
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"hashAlgo": "r:sha256",
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"hash": "894517c9163c896ec31a2adbd33c0681fd5f45b2c0ef08a64c92a03fb97f390f",
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@ -42,7 +56,7 @@ TEST_JSON(DerivationOutput, caFixed,
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}),
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"drv-name", "output-name")
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TEST_JSON(DerivationOutput, caFloating,
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TEST_JSON(caFloating,
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R"({
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"hashAlgo": "r:sha256"
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})",
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@ -52,12 +66,12 @@ TEST_JSON(DerivationOutput, caFloating,
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}),
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"drv-name", "output-name")
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TEST_JSON(DerivationOutput, deferred,
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TEST_JSON(deferred,
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R"({ })",
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DerivationOutput::Deferred { },
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"drv-name", "output-name")
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TEST_JSON(DerivationOutput, impure,
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TEST_JSON(impure,
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R"({
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"hashAlgo": "r:sha256",
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"impure": true
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@ -68,7 +82,27 @@ TEST_JSON(DerivationOutput, impure,
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}),
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"drv-name", "output-name")
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TEST_JSON(Derivation, impure,
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#undef TEST_JSON
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#define TEST_JSON(NAME, STR, VAL, DRV_NAME) \
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TEST_F(DerivationTest, Derivation_ ## NAME ## _to_json) { \
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using nlohmann::literals::operator "" _json; \
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ASSERT_EQ( \
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STR ## _json, \
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(Derivation { VAL }).toJSON(*store)); \
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} \
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\
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TEST_F(DerivationTest, Derivation_ ## NAME ## _from_json) { \
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using nlohmann::literals::operator "" _json; \
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ASSERT_EQ( \
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Derivation { VAL }, \
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Derivation::fromJSON( \
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*store, \
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DRV_NAME, \
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STR ## _json)); \
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}
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TEST_JSON(simple,
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R"({
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"inputSrcs": [
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"/nix/store/c015dhfh5l0lp6wxyvdn7bmwhbbr6hr9-dep1"
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},
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};
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drv;
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}))
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}),
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"drv-name")
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#undef TEST_JSON
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@ -17,12 +17,12 @@
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* }
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* ```
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*/
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#define GENERATE_ONE_CMP(COMPARATOR, MY_TYPE, FIELDS...) \
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#define GENERATE_ONE_CMP(COMPARATOR, MY_TYPE, ...) \
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bool operator COMPARATOR(const MY_TYPE& other) const { \
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const MY_TYPE* me = this; \
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auto fields1 = std::make_tuple( FIELDS ); \
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me = &other; \
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auto fields2 = std::make_tuple( FIELDS ); \
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__VA_OPT__(const MY_TYPE* me = this;) \
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auto fields1 = std::make_tuple( __VA_ARGS__ ); \
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__VA_OPT__(me = &other;) \
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auto fields2 = std::make_tuple( __VA_ARGS__ ); \
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return fields1 COMPARATOR fields2; \
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}
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#define GENERATE_EQUAL(args...) GENERATE_ONE_CMP(==, args)
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