618 lines
27 KiB
C++
618 lines
27 KiB
C++
#define CPP_UTILITIES_PATHHELPER_STRING_VIEW
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#include "./params.h"
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#include "./render.h"
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#include "./routes.h"
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#include "../serversetup.h"
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#include <c++utilities/conversion/stringbuilder.h>
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#include <c++utilities/io/path.h>
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#include <algorithm>
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#include <variant>
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using namespace std;
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using namespace CppUtilities;
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using namespace LibRepoMgr::WebAPI::Render;
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using namespace LibPkg;
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namespace LibRepoMgr {
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namespace WebAPI {
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namespace Routes {
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void getBuildActions(const Params ¶ms, ResponseHandler &&handler)
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{
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RAPIDJSON_NAMESPACE::Document jsonDoc(RAPIDJSON_NAMESPACE::kArrayType);
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RAPIDJSON_NAMESPACE::Value::Array array(jsonDoc.GetArray());
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const auto start = params.target.asNumber<std::size_t>("start", std::numeric_limits<std::size_t>::max());
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const auto serverLimit = params.setup.webServer.buildActionsResponseLimit.load();
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auto limit = params.target.asNumber<std::size_t>("limit");
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if (!limit || limit > serverLimit) {
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limit = serverLimit;
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}
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auto buildActionLock = params.setup.building.lockToRead();
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params.setup.building.forEachBuildAction(
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[&array, &jsonDoc](std::size_t count) { array.Reserve(ReflectiveRapidJSON::JsonReflector::rapidJsonSize(count), jsonDoc.GetAllocator()); },
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[&array, &jsonDoc, limit](LibPkg::StorageID, BuildActionBase &&buildActionBase) {
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ReflectiveRapidJSON::JsonReflector::push(buildActionBase, array, jsonDoc.GetAllocator());
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return array.Size() >= limit;
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},
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limit, start);
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buildActionLock.unlock();
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handler(makeJson(params.request(), jsonDoc, params.target.hasPrettyFlag()));
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}
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struct BuildActionSearchResult {
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std::vector<BuildActionIdType> specifiedIds;
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std::vector<std::shared_ptr<BuildAction>> actions;
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std::variant<std::monostate, std::shared_lock<std::shared_mutex>, std::unique_lock<std::shared_mutex>> lock;
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bool ok = false;
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};
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BuildActionSearchResult findBuildActions(const Params ¶ms, ResponseHandler &&handler, bool acquireWriteLock = false, std::size_t maxIDs = 100)
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{
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auto result = BuildActionSearchResult();
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const auto idParams = params.target.decodeValues("id");
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if (idParams.empty()) {
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handler(makeBadRequest(params.request(), "need at least one build action ID"));
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return result;
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}
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if (idParams.size() > maxIDs) {
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handler(makeBadRequest(params.request(), "number of specified IDs exceeds limit"));
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return result;
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}
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result.specifiedIds.reserve(idParams.size());
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for (const auto &idString : idParams) {
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try {
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result.specifiedIds.emplace_back(stringToNumber<BuildActionIdType>(idString));
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} catch (const ConversionException &) {
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handler(makeBadRequest(params.request(), "all IDs must be unsigned integers"));
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return result;
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}
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}
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if (acquireWriteLock) {
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result.lock = params.setup.building.lockToWrite();
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} else {
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result.lock = params.setup.building.lockToRead();
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}
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result.actions.reserve(result.specifiedIds.size());
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for (const auto id : result.specifiedIds) {
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auto action = params.setup.building.getBuildAction(id);
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if (!action) {
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result.lock = std::monostate{};
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handler(makeBadRequest(params.request(), argsToString("no build action with specified ID \"", id, "\" exists")));
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return result;
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}
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result.actions.emplace_back(std::move(action));
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}
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result.ok = true;
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return result;
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}
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void getBuildActionDetails(const Params ¶ms, ResponseHandler &&handler)
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{
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RAPIDJSON_NAMESPACE::Document jsonDoc(RAPIDJSON_NAMESPACE::kArrayType);
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RAPIDJSON_NAMESPACE::Value::Array array(jsonDoc.GetArray());
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auto buildActionsSearchResult = findBuildActions(params, std::move(handler));
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if (!buildActionsSearchResult.ok) {
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return;
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}
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for (const auto &action : buildActionsSearchResult.actions) {
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ReflectiveRapidJSON::JsonReflector::push(*action, array, jsonDoc.GetAllocator());
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}
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buildActionsSearchResult.lock = std::monostate{};
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handler(makeJson(params.request(), jsonDoc, params.target.hasPrettyFlag()));
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}
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static std::string readNameParam(const Params ¶ms, ResponseHandler &&handler)
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{
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const auto nameParams = params.target.decodeValues("name");
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if (nameParams.size() != 1) {
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handler(makeBadRequest(params.request(), "name must be specified exactly one time"));
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return std::string();
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}
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if (nameParams.front().empty()) {
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handler(makeBadRequest(params.request(), "the name parameter must not be empty"));
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return std::string();
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}
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return nameParams.front();
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}
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static void getBuildActionFile(
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const Params ¶ms, std::vector<std::string> BuildAction::*fileList, ResponseHandler &&handler, bool determineMimeType)
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{
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const auto name = readNameParam(params, std::move(handler));
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if (name.empty()) {
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return;
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}
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auto mimeType = boost::beast::string_view("application/octet-stream");
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auto contentDisposition = std::string();
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if (determineMimeType) {
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if (const auto detectedMimeType = Session::determineMimeType(name, boost::beast::string_view()); !detectedMimeType.empty()) {
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mimeType = detectedMimeType;
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} else {
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auto fileName = CppUtilities::fileName(name);
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findAndReplace(fileName, "\"", "");
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contentDisposition = "attachment; filename=\"" % fileName + "\"";
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}
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}
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auto buildActionsSearchResult = findBuildActions(params, std::move(handler), false, 1);
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if (!buildActionsSearchResult.ok) {
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return;
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}
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auto &buildAction = buildActionsSearchResult.actions.front();
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for (const auto &logFile : (*buildAction).*fileList) {
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if (name == logFile) {
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buildAction->streamFile(params, name, mimeType, contentDisposition);
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return;
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}
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}
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handler(makeNotFound(params.request(), name));
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}
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void getBuildActionLogFile(const Params ¶ms, ResponseHandler &&handler)
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{
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getBuildActionFile(params, &BuildAction::logfiles, std::move(handler), false);
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}
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void getBuildActionArtefact(const Params ¶ms, ResponseHandler &&handler)
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{
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getBuildActionFile(params, &BuildAction::artefacts, std::move(handler), true);
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}
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void postBuildAction(const Params ¶ms, ResponseHandler &&handler)
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{
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// validate general parameters
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static const auto generalParameters = std::unordered_set<std::string_view>{ "type", "directory", "start-condition", "start-after-id",
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"source-repo", "destination-repo", "package", "pretty" };
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const auto typeParams = params.target.decodeValues("type");
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const auto taskParams = params.target.decodeValues("task");
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if (taskParams.size() + typeParams.size() != 1) {
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handler(makeBadRequest(params.request(), "need exactly either one type or one task parameter"));
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return;
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}
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auto directories = params.target.decodeValues("directory");
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if (directories.size() > 1) {
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handler(makeBadRequest(params.request(), "at most one directory can be specified"));
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return;
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}
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const auto startConditionValues = params.target.decodeValues("start-condition");
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if (startConditionValues.size() > 1) {
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handler(makeBadRequest(params.request(), "at most one start condition can be specified"));
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return;
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}
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const auto startImmediately = startConditionValues.empty() || startConditionValues.front() == "immediately";
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const auto startAfterAnotherAction = !startImmediately && startConditionValues.front() == "after";
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if (!startImmediately && !startAfterAnotherAction && startConditionValues.front() != "manually") {
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handler(makeBadRequest(params.request(), "specified start condition is not supported"));
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return;
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}
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const auto startAfterIdValues = params.target.decodeValues("start-after-id");
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auto startAfterIds = std::vector<BuildActionIdType>();
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startAfterIds.reserve(startAfterIdValues.size());
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for (const auto &startAfterIdValue : startAfterIdValues) {
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if (startAfterIdValue.empty()) {
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continue;
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}
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try {
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startAfterIds.emplace_back(stringToNumber<LibPkg::StorageID>(startAfterIdValue));
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} catch (const ConversionException &) {
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handler(makeBadRequest(params.request(), "the specified ID to start after is not a valid build action ID"));
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return;
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}
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}
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if (startAfterAnotherAction) {
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if (startAfterIds.empty()) {
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handler(makeBadRequest(params.request(), "start condition is \"after\" but not at least one \"start-after-id\" specified"));
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return;
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}
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} else if (!startAfterIdValues.empty() && (startAfterIdValues.size() > 1 || !startAfterIdValues.front().empty())) {
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handler(makeBadRequest(params.request(), "start condition is not \"after\" but \"start-after-id\" specified"));
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return;
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}
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// spawn multiple build actions for the specified task
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if (!taskParams.empty()) {
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postBuildActionsFromTask(params, std::move(handler), taskParams.front(), directories.empty() ? std::string() : directories.front(),
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startAfterIds, startImmediately);
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return;
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}
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// read type and type-specific flags and settings from parameters
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auto &metaInfo = params.setup.building.metaInfo;
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auto metaInfoLock = metaInfo.lockToRead();
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const auto &typeInfo = metaInfo.typeInfoForName(typeParams.front());
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const auto type = typeInfo.id;
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if (type == BuildActionType::Invalid) {
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handler(makeBadRequest(params.request(), "specified type is invalid"));
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return;
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}
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const auto &mapping = metaInfo.mappingForId(type);
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BuildActionFlagType buildActionFlags = noBuildActionFlags;
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std::unordered_map<std::string, std::string> buildActionSettings;
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for (const auto &[key, value] : params.target.params) {
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if (generalParameters.find(key) != generalParameters.end()) {
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continue; // skip general parameters here
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}
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if (const auto flag = mapping.flagInfoByName.find(key); flag != mapping.flagInfoByName.end()) {
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if (!value.empty() && value != "0") {
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buildActionFlags += flag->second.get().id;
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}
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continue;
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}
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if (mapping.settingInfoByName.find(key) != mapping.settingInfoByName.end()) {
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buildActionSettings[WebAPI::Url::decodeValue(key)] = WebAPI::Url::decodeValue(value);
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continue;
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}
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handler(makeBadRequest(params.request(), argsToString("parameter \"", key, "\" is not supported (by specified build action type)")));
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return;
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}
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metaInfoLock.unlock();
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// initialize build action
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auto buildLock = params.setup.building.lockToWrite();
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const auto id = params.setup.building.allocateBuildActionID();
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buildLock.unlock();
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auto buildAction = std::make_shared<BuildAction>(id, ¶ms.setup);
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if (!directories.empty()) {
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buildAction->directory = move(directories.front());
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}
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buildAction->type = type;
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buildAction->sourceDbs = params.target.decodeValues("source-repo");
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buildAction->destinationDbs = params.target.decodeValues("destination-repo");
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buildAction->packageNames = params.target.decodeValues("package");
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buildAction->startAfter = startAfterIds;
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buildAction->flags = buildActionFlags;
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buildAction->settings.swap(buildActionSettings);
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// serialize build action
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const auto response = buildAction->toJsonDocument();
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// start build action immediately or just add to setup-global list for now
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auto buildLock2 = params.setup.building.lockToWrite();
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if (startImmediately) {
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buildAction->start(params.setup, params.session.secrets());
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} else {
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params.setup.building.storeBuildAction(buildAction);
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}
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buildLock2.unlock();
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handler(makeJson(params.request(), response));
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}
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struct SequencedBuildActions {
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std::string_view name;
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std::vector<std::variant<std::shared_ptr<BuildAction>, SequencedBuildActions>> actions;
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bool concurrent = false;
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};
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static std::string allocateNewBuildAction(const BuildActionMetaInfo &metaInfo, const std::string &taskName,
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const std::vector<std::string> &packageNames, const std::string &directory,
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const std::unordered_map<std::string, BuildActionTemplate> &actionTemplates, SequencedBuildActions &newActionSequence,
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std::vector<std::shared_ptr<BuildAction>> &allocatedActions, const std::string &actionTemplateToAllocate, bool asFirstActions)
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{
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const auto actionTemplateIterator = actionTemplates.find(actionTemplateToAllocate);
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if (actionTemplateIterator == actionTemplates.end()) {
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return "the action \"" % actionTemplateToAllocate + "\" of the specified task is not configured";
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}
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const auto &actionTemplate = actionTemplateIterator->second;
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const auto buildActionType = actionTemplate.type;
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if (!metaInfo.isTypeIdValid(buildActionType)) {
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return argsToString("the type \"", static_cast<std::size_t>(buildActionType), "\" of action \"", actionTemplateToAllocate,
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"\" of the specified task is invalid");
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}
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const auto &typeInfo = metaInfo.typeInfoForId(actionTemplate.type);
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auto &allocatedBuildAction = allocatedActions.emplace_back(std::make_shared<BuildAction>());
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auto *const buildAction = std::get<std::shared_ptr<BuildAction>>(newActionSequence.actions.emplace_back(allocatedBuildAction)).get();
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buildAction->taskName = taskName;
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buildAction->templateName = actionTemplateToAllocate;
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buildAction->directory = !typeInfo.directory || directory.empty() ? actionTemplate.directory : directory;
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buildAction->type = buildActionType;
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buildAction->sourceDbs = actionTemplate.sourceDbs;
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buildAction->destinationDbs = actionTemplate.destinationDbs;
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if (asFirstActions || !typeInfo.implyPackagesFromPrevAction) {
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buildAction->packageNames = !typeInfo.packageNames || packageNames.empty() ? actionTemplate.packageNames : packageNames;
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}
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buildAction->flags = actionTemplate.flags;
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buildAction->settings = actionTemplate.settings;
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return std::string();
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}
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static std::string allocateNewBuildActionSequence(const BuildActionMetaInfo &metaInfo, const std::string &taskName,
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const std::vector<std::string> &packageNames, const std::string &directory,
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const std::unordered_map<std::string, BuildActionTemplate> &actionTemplates, SequencedBuildActions &newActionSequence,
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std::vector<std::shared_ptr<BuildAction>> &allocatedActions, const BuildActionSequence &actionSequenceToAllocate, bool asFirstActions = true)
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{
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auto error = std::string();
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newActionSequence.name = actionSequenceToAllocate.name;
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newActionSequence.concurrent = actionSequenceToAllocate.concurrent;
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for (const auto &actionNode : actionSequenceToAllocate.actions) {
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if (const auto *const actionTemplateName = std::get_if<std::string>(&actionNode)) {
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error = allocateNewBuildAction(metaInfo, taskName, packageNames, directory, actionTemplates, newActionSequence, allocatedActions,
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*actionTemplateName, newActionSequence.concurrent ? asFirstActions : newActionSequence.actions.empty());
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} else if (const auto *const actionSequence = std::get_if<BuildActionSequence>(&actionNode)) {
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error = allocateNewBuildActionSequence(metaInfo, taskName, packageNames, directory, actionTemplates,
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std::get<SequencedBuildActions>(newActionSequence.actions.emplace_back(SequencedBuildActions())), allocatedActions, *actionSequence,
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newActionSequence.concurrent ? asFirstActions : false);
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}
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if (!error.empty()) {
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return error;
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}
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}
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return error;
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}
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static std::vector<std::shared_ptr<BuildAction>> allocateBuildActionIDs(ServiceSetup &setup,
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const std::vector<std::shared_ptr<BuildAction>> &startAfterActions, const std::vector<std::shared_ptr<BuildAction>> &parentLevelActions,
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SequencedBuildActions &newActionSequence)
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{
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auto previousActions = std::vector<std::shared_ptr<BuildAction>>();
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for (auto &sequencedAction : newActionSequence.actions) {
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// make concurrent actions depend on the parent-level actions (or actions specified via start after ID parameters on top-level)
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// make the first action within a sequence depend on the parent-level actions (or actions specified via start after ID parameters on top-level)
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// make further actions within a sequence depend on the previous action within the sequence
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const auto &relevantLastBuildActions = newActionSequence.concurrent || previousActions.empty() ? parentLevelActions : previousActions;
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if (auto *const action = std::get_if<std::shared_ptr<BuildAction>>(&sequencedAction)) {
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(*action)->id = setup.building.allocateBuildActionID();
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(*action)->assignStartAfter(relevantLastBuildActions.empty() ? startAfterActions : relevantLastBuildActions);
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if (!newActionSequence.concurrent) {
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previousActions.clear(); // only the last action within the sequence is relevant
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}
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previousActions.emplace_back(*action);
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} else if (auto *const subSequence = std::get_if<SequencedBuildActions>(&sequencedAction)) {
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auto newSubActions = allocateBuildActionIDs(setup, startAfterActions, relevantLastBuildActions, *subSequence);
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if (!newSubActions.empty()) {
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if (!newActionSequence.concurrent) {
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previousActions.clear(); // only the last action within the sequence is relevant
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}
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if (subSequence->concurrent) {
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// consider all new sub-actions from last level relevant when they're concurrent
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previousActions.insert(previousActions.end(), newSubActions.begin(), newSubActions.end());
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} else {
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previousActions.emplace_back(newSubActions.back());
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}
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}
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}
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}
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return previousActions;
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}
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static bool startFirstBuildActions(const Params ¶ms, SequencedBuildActions &newActionSequence)
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{
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auto handledFirstAction = false;
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for (auto &sequencedAction : newActionSequence.actions) {
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if (auto *const maybeAction = std::get_if<std::shared_ptr<BuildAction>>(&sequencedAction)) {
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auto &action = *maybeAction;
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handledFirstAction = true;
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if (action->isScheduled()) {
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action->start(params.setup, params.session.secrets());
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}
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if (!newActionSequence.concurrent) {
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return true;
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}
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} else if (auto *const subSequence = std::get_if<SequencedBuildActions>(&sequencedAction)) {
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if (startFirstBuildActions(params, *subSequence) && !newActionSequence.concurrent) {
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return true;
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}
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}
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}
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return handledFirstAction;
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}
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void postBuildActionsFromTask(const Params ¶ms, ResponseHandler &&handler, const std::string &taskName, const std::string &directory,
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const std::vector<BuildActionIdType> &startAfterIds, bool startImmediately)
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{
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static_assert(std::is_same_v<std::size_t, BuildAction::IdType>);
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// show error when parameters are specified which are only supposed to be specified when starting a single build action
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if (!params.target.value("source-repo").empty()) {
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handler(makeBadRequest(params.request(), "the source repo can not be explicitly specified when a task is specified"));
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return;
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}
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if (!params.target.value("destination-repo").empty()) {
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handler(makeBadRequest(params.request(), "the destination repo can not be explicitly specified when a task is specified"));
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return;
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}
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// read other parameters
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const auto packageNames = params.target.decodeValues("package");
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// find task info
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auto setupLock = params.setup.lockToRead();
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const auto &presets = params.setup.building.presets;
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const auto taskIterator = presets.tasks.find(taskName);
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if (taskIterator == presets.tasks.end()) {
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setupLock.unlock();
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handler(makeBadRequest(params.request(), "the specified task is not configured"));
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return;
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}
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const auto &task = taskIterator->second;
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const auto &actionTemplates = presets.templates;
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if (task.actions.empty()) {
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setupLock.unlock();
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handler(makeBadRequest(params.request(), "the specified task has no actions configured"));
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return;
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}
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|
|
// allocate a vector to store build actions (temporarily) in
|
|
auto newActionSequence = SequencedBuildActions();
|
|
auto allocatedActions = std::vector<std::shared_ptr<BuildAction>>();
|
|
auto parentLevelActions = std::vector<std::shared_ptr<BuildAction>>();
|
|
newActionSequence.actions.reserve(task.actions.size());
|
|
allocatedActions.reserve(task.actions.size());
|
|
|
|
// copy data from templates into new build actions
|
|
auto &metaInfo = params.setup.building.metaInfo;
|
|
auto metaInfoLock = metaInfo.lockToRead();
|
|
auto error
|
|
= allocateNewBuildActionSequence(metaInfo, taskName, packageNames, directory, actionTemplates, newActionSequence, allocatedActions, task);
|
|
metaInfoLock.unlock();
|
|
setupLock.unlock();
|
|
if (!error.empty()) {
|
|
handler(makeBadRequest(params.request(), std::move(error)));
|
|
return;
|
|
}
|
|
|
|
// allocate build action IDs and populate "start after ID" and follow-up actions
|
|
auto &building = params.setup.building;
|
|
auto buildLock = building.lockToWrite();
|
|
auto startsAfterBuildActions = building.getBuildActions(startAfterIds);
|
|
allocateBuildActionIDs(params.setup, startsAfterBuildActions, parentLevelActions, newActionSequence);
|
|
buildLock.unlock();
|
|
|
|
// serialize build actions
|
|
auto buildReadLock = building.lockToRead();
|
|
const auto startNow = startImmediately || (!startsAfterBuildActions.empty() && BuildAction::haveSucceeded(startsAfterBuildActions));
|
|
const auto response = ReflectiveRapidJSON::JsonReflector::toJsonDocument(allocatedActions);
|
|
|
|
// start first build action immediately (read-lock sufficient because build action not part of setup-global list yet)
|
|
if (startNow) {
|
|
startFirstBuildActions(params, newActionSequence);
|
|
}
|
|
|
|
// add build actions to setup-global list
|
|
buildLock = building.lockToWrite(buildReadLock);
|
|
for (auto &newAction : allocatedActions) {
|
|
building.storeBuildAction(newAction);
|
|
}
|
|
buildLock.unlock();
|
|
|
|
handler(makeJson(params.request(), response));
|
|
}
|
|
|
|
void deleteBuildActions(const Params ¶ms, ResponseHandler &&handler)
|
|
{
|
|
auto buildActionsSearchResult = findBuildActions(params, std::move(handler), true, std::numeric_limits<std::size_t>::max());
|
|
if (!buildActionsSearchResult.ok) {
|
|
return;
|
|
}
|
|
for (const auto &action : buildActionsSearchResult.actions) {
|
|
if (!action->isExecuting()) {
|
|
continue;
|
|
}
|
|
buildActionsSearchResult.lock = std::monostate{};
|
|
handler(
|
|
makeBadRequest(params.request(), argsToString("can not delete \"", action->id, "\"; it is still being executed; no actions altered")));
|
|
return;
|
|
}
|
|
params.setup.building.deleteBuildAction(buildActionsSearchResult.actions);
|
|
buildActionsSearchResult.lock = std::monostate{};
|
|
handler(makeText(params.request(), "ok"));
|
|
}
|
|
|
|
void postCloneBuildActions(const Params ¶ms, ResponseHandler &&handler)
|
|
{
|
|
const auto startConditionValues = params.target.decodeValues("start-condition");
|
|
if (startConditionValues.size() > 1) {
|
|
handler(makeBadRequest(params.request(), "at most one start condition can be specified"));
|
|
return;
|
|
}
|
|
const auto startImmediately = startConditionValues.empty() || startConditionValues.front() == "immediately";
|
|
if (!startImmediately && startConditionValues.front() != "manually") {
|
|
handler(makeBadRequest(params.request(), "specified start condition is not supported"));
|
|
return;
|
|
}
|
|
auto buildActionsSearchResult = findBuildActions(params, std::move(handler), true);
|
|
if (!buildActionsSearchResult.ok) {
|
|
return;
|
|
}
|
|
for (const auto &action : buildActionsSearchResult.actions) {
|
|
if (action->isDone()) {
|
|
continue;
|
|
}
|
|
buildActionsSearchResult.lock = std::monostate{};
|
|
handler(makeBadRequest(
|
|
params.request(), argsToString("can not clone \"", action->id, "\"; it is still scheduled or executed; no actions altered")));
|
|
return;
|
|
}
|
|
auto cloneIds = std::vector<BuildAction::IdType>();
|
|
cloneIds.reserve(buildActionsSearchResult.actions.size());
|
|
for (const auto &orig : buildActionsSearchResult.actions) {
|
|
const auto id = params.setup.building.allocateBuildActionID();
|
|
auto clone = make_shared<BuildAction>(id);
|
|
clone->taskName = orig->taskName.empty() ? "Clone" : (orig->taskName.starts_with("Clone") ? orig->taskName : "Clone of " + orig->taskName);
|
|
clone->directory = orig->directory;
|
|
clone->packageNames = orig->packageNames;
|
|
clone->sourceDbs = orig->sourceDbs;
|
|
clone->destinationDbs = orig->destinationDbs;
|
|
clone->settings = orig->settings;
|
|
clone->flags = orig->flags;
|
|
clone->type = orig->type;
|
|
clone->startAfter = orig->startAfter;
|
|
if (startImmediately) {
|
|
clone->start(params.setup, params.session.secrets());
|
|
}
|
|
params.setup.building.storeBuildAction(std::move(clone));
|
|
cloneIds.emplace_back(id);
|
|
}
|
|
buildActionsSearchResult.lock = std::monostate{};
|
|
handler(makeJson(params.request(), cloneIds));
|
|
}
|
|
|
|
void postStartBuildActions(const Params ¶ms, ResponseHandler &&handler)
|
|
{
|
|
auto buildActionsSearchResult = findBuildActions(params, std::move(handler), true);
|
|
if (!buildActionsSearchResult.ok) {
|
|
return;
|
|
}
|
|
for (const auto &action : buildActionsSearchResult.actions) {
|
|
if (action->isScheduled()) {
|
|
continue;
|
|
}
|
|
buildActionsSearchResult.lock = std::monostate{};
|
|
handler(
|
|
makeBadRequest(params.request(), argsToString("can not start \"", action->id, "\"; it has already been started; no actions altered")));
|
|
return;
|
|
}
|
|
for (auto &action : buildActionsSearchResult.actions) {
|
|
action->start(params.setup, params.session.secrets());
|
|
}
|
|
buildActionsSearchResult.lock = std::monostate{};
|
|
handler(makeText(params.request(), "ok"));
|
|
}
|
|
|
|
void postStopBuildActions(const Params ¶ms, ResponseHandler &&handler)
|
|
{
|
|
auto buildActionsSearchResult = findBuildActions(params, std::move(handler), true);
|
|
if (!buildActionsSearchResult.ok) {
|
|
return;
|
|
}
|
|
for (const auto &action : buildActionsSearchResult.actions) {
|
|
if (action->isExecuting()) {
|
|
continue;
|
|
}
|
|
buildActionsSearchResult.lock = std::monostate{};
|
|
handler(makeBadRequest(
|
|
params.request(), argsToString("can not stop/decline \"", action->id, "\"; it is not being executed; no actions altered")));
|
|
return;
|
|
}
|
|
for (auto &action : buildActionsSearchResult.actions) {
|
|
action->abort();
|
|
if (action->status == BuildActionStatus::Running) {
|
|
// can not immediately stop a running action; the action needs to terminate itself acknowledging the aborted flag
|
|
continue;
|
|
}
|
|
if (action->status == BuildActionStatus::AwaitingConfirmation) {
|
|
action->result = BuildActionResult::ConfirmationDeclined;
|
|
} else {
|
|
action->result = BuildActionResult::Aborted;
|
|
}
|
|
action->status = BuildActionStatus::Finished;
|
|
params.setup.building.storeBuildAction(action);
|
|
}
|
|
buildActionsSearchResult.lock = std::monostate{};
|
|
handler(makeText(params.request(), "ok"));
|
|
}
|
|
|
|
} // namespace Routes
|
|
} // namespace WebAPI
|
|
} // namespace LibRepoMgr
|