forked from lix-project/lix
232 lines
6.9 KiB
C++
232 lines
6.9 KiB
C++
#include "parsed-derivations.hh"
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#include <nlohmann/json.hpp>
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#include <regex>
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#include "json.hh"
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namespace nix {
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ParsedDerivation::ParsedDerivation(const StorePath & drvPath, BasicDerivation & drv)
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: drvPath(drvPath), drv(drv)
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{
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/* Parse the __json attribute, if any. */
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auto jsonAttr = drv.env.find("__json");
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if (jsonAttr != drv.env.end()) {
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try {
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structuredAttrs = std::make_unique<nlohmann::json>(nlohmann::json::parse(jsonAttr->second));
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} catch (std::exception & e) {
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throw Error("cannot process __json attribute of '%s': %s", drvPath.to_string(), e.what());
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}
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}
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}
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ParsedDerivation::~ParsedDerivation() { }
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std::optional<std::string> ParsedDerivation::getStringAttr(const std::string & name) const
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{
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if (structuredAttrs) {
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auto i = structuredAttrs->find(name);
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if (i == structuredAttrs->end())
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return {};
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else {
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if (!i->is_string())
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throw Error("attribute '%s' of derivation '%s' must be a string", name, drvPath.to_string());
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return i->get<std::string>();
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}
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} else {
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auto i = drv.env.find(name);
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if (i == drv.env.end())
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return {};
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else
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return i->second;
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}
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}
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bool ParsedDerivation::getBoolAttr(const std::string & name, bool def) const
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{
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if (structuredAttrs) {
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auto i = structuredAttrs->find(name);
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if (i == structuredAttrs->end())
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return def;
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else {
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if (!i->is_boolean())
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throw Error("attribute '%s' of derivation '%s' must be a Boolean", name, drvPath.to_string());
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return i->get<bool>();
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}
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} else {
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auto i = drv.env.find(name);
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if (i == drv.env.end())
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return def;
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else
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return i->second == "1";
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}
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}
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std::optional<Strings> ParsedDerivation::getStringsAttr(const std::string & name) const
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{
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if (structuredAttrs) {
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auto i = structuredAttrs->find(name);
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if (i == structuredAttrs->end())
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return {};
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else {
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if (!i->is_array())
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throw Error("attribute '%s' of derivation '%s' must be a list of strings", name, drvPath.to_string());
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Strings res;
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for (auto j = i->begin(); j != i->end(); ++j) {
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if (!j->is_string())
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throw Error("attribute '%s' of derivation '%s' must be a list of strings", name, drvPath.to_string());
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res.push_back(j->get<std::string>());
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}
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return res;
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}
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} else {
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auto i = drv.env.find(name);
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if (i == drv.env.end())
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return {};
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else
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return tokenizeString<Strings>(i->second);
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}
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}
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StringSet ParsedDerivation::getRequiredSystemFeatures() const
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{
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StringSet res;
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for (auto & i : getStringsAttr("requiredSystemFeatures").value_or(Strings()))
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res.insert(i);
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if (!derivationHasKnownOutputPaths(drv.type()))
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res.insert("ca-derivations");
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return res;
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}
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bool ParsedDerivation::canBuildLocally(Store & localStore) const
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{
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if (drv.platform != settings.thisSystem.get()
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&& !settings.extraPlatforms.get().count(drv.platform)
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&& !drv.isBuiltin())
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return false;
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if (settings.maxBuildJobs.get() == 0
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&& !drv.isBuiltin())
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return false;
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for (auto & feature : getRequiredSystemFeatures())
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if (!localStore.systemFeatures.get().count(feature)) return false;
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return true;
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}
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bool ParsedDerivation::willBuildLocally(Store & localStore) const
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{
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return getBoolAttr("preferLocalBuild") && canBuildLocally(localStore);
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}
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bool ParsedDerivation::substitutesAllowed() const
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{
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return getBoolAttr("allowSubstitutes", true);
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}
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static std::regex shVarName("[A-Za-z_][A-Za-z0-9_]*");
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std::optional<nlohmann::json> ParsedDerivation::prepareStructuredAttrs(Store & store, const StorePathSet & inputPaths)
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{
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auto structuredAttrs = getStructuredAttrs();
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if (!structuredAttrs) return std::nullopt;
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auto json = *structuredAttrs;
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/* Add an "outputs" object containing the output paths. */
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nlohmann::json outputs;
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for (auto & i : drv.outputs)
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outputs[i.first] = hashPlaceholder(i.first);
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json["outputs"] = outputs;
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/* Handle exportReferencesGraph. */
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auto e = json.find("exportReferencesGraph");
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if (e != json.end() && e->is_object()) {
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for (auto i = e->begin(); i != e->end(); ++i) {
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std::ostringstream str;
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{
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JSONPlaceholder jsonRoot(str, true);
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StorePathSet storePaths;
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for (auto & p : *i)
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storePaths.insert(store.parseStorePath(p.get<std::string>()));
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store.pathInfoToJSON(jsonRoot,
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store.exportReferences(storePaths, inputPaths), false, true);
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}
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json[i.key()] = nlohmann::json::parse(str.str()); // urgh
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}
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}
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return json;
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}
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/* As a convenience to bash scripts, write a shell file that
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maps all attributes that are representable in bash -
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namely, strings, integers, nulls, Booleans, and arrays and
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objects consisting entirely of those values. (So nested
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arrays or objects are not supported.) */
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std::string writeStructuredAttrsShell(const nlohmann::json & json)
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{
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auto handleSimpleType = [](const nlohmann::json & value) -> std::optional<std::string> {
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if (value.is_string())
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return shellEscape(value.get<std::string_view>());
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if (value.is_number()) {
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auto f = value.get<float>();
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if (std::ceil(f) == f)
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return std::to_string(value.get<int>());
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}
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if (value.is_null())
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return std::string("''");
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if (value.is_boolean())
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return value.get<bool>() ? std::string("1") : std::string("");
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return {};
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};
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std::string jsonSh;
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for (auto & [key, value] : json.items()) {
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if (!std::regex_match(key, shVarName)) continue;
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auto s = handleSimpleType(value);
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if (s)
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jsonSh += fmt("declare %s=%s\n", key, *s);
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else if (value.is_array()) {
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std::string s2;
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bool good = true;
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for (auto & value2 : value) {
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auto s3 = handleSimpleType(value2);
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if (!s3) { good = false; break; }
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s2 += *s3; s2 += ' ';
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}
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if (good)
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jsonSh += fmt("declare -a %s=(%s)\n", key, s2);
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}
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else if (value.is_object()) {
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std::string s2;
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bool good = true;
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for (auto & [key2, value2] : value.items()) {
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auto s3 = handleSimpleType(value2);
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if (!s3) { good = false; break; }
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s2 += fmt("[%s]=%s ", shellEscape(key2), *s3);
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}
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if (good)
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jsonSh += fmt("declare -A %s=(%s)\n", key, s2);
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}
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}
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return jsonSh;
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}
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}
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