Problem: the hexagonal refactor churns the backend tree for nine more phases; the UI delivery stack (web/ SPA, cmd/desktop Wails wrapper, compose/web image) must move to its own repo first so doc/layout rewrites land once on a backend-only tree. Change: - New repo git.hubris.network/dtoro/oikos-web (v0.33.0): web/, desktop/ (updateURL repointed to oikos-web releases), compose/, own CI (web + desktop jobs), own deploy script (CI-green gate, TOCTOU guard, version-tagged images, prune-to-3), own webhook receiver on :9798 + launchd unit, own compose project publishing the same 8091:80. - Cutover executed on mac-mini in order: oikos stack's web service stopped+removed, oikos-web project brought up on 8091; outer Caddy untouched (targets the published port) — serving + Authentik flow + /wails 404 quirk verified post-cutover. - Stripped from oikos: web/, cmd/desktop/, compose/web/, desktop CI workflow, ci.yml web job, Makefile ui/desktop/desktop-package/install targets, the compose web service, oikos-web from deploy.sh's fallback prune list; wails + go-keyring dropped from go.mod, vendor synced. - README / CONTRIBUTING / AGENTS.md / .agents dev+operations docs now point at the new repo; mbse + mascot design docs carry a path note. Risk: production SPA serving depends on the new pipeline now; rollback is versioned-image re-up of the old web service from a pre-split checkout (port 8091). Desktop builds installed before the split still check dtoro/oikos releases — one manual reinstall, noted in the oikos-web release notes. Verification: go vet, make test (race), make generate-check, golangci (no new findings; baseline down 400→365); post-cutover curls — localhost:8091 200, /wails/runtime.js 404, outer Caddy 302 Authentik.
129 lines
5.2 KiB
JavaScript
129 lines
5.2 KiB
JavaScript
"use strict";
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Object.defineProperty(exports, "__esModule", {
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value: true
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});
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exports["default"] = iteration;
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var _assert = _interopRequireDefault(require("assert"));
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var _nodes = _interopRequireDefault(require("./nodes"));
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var _edges = _interopRequireDefault(require("./edges"));
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var _neighbors = _interopRequireDefault(require("./neighbors"));
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function _interopRequireDefault(e) { return e && e.__esModule ? e : { "default": e }; }
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/**
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* Graphology Iteration Specs
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* ===========================
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*
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* Testing the iteration-related methods of the graph.
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*/
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function iteration(Graph, checkers) {
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return {
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Adjacency: {
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'#.forEachAdjacencyEntry': {
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'it should iterate over the relevant elements.': function it_should_iterate_over_the_relevant_elements() {
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function test(multi) {
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var graph = new Graph({
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multi: multi
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});
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graph.addNode('John', {
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hello: 'world'
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});
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var _graph$mergeUndirecte = graph.mergeUndirectedEdge('John', 'Mary', {
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weight: 3
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}),
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e1 = _graph$mergeUndirecte[0];
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graph.mergeUndirectedEdge('Thomas', 'John');
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graph.mergeDirectedEdge('John', 'Thomas');
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var count = 0;
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graph.forEachAdjacencyEntry(function (node, neighbor, attr, neighborAttr, edge, edgeAttr, undirected) {
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count++;
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if (node === 'John') {
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_assert["default"].deepStrictEqual(attr, {
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hello: 'world'
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});
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} else {
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_assert["default"].deepStrictEqual(attr, {});
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}
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if (neighbor === 'John') {
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_assert["default"].deepStrictEqual(neighborAttr, {
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hello: 'world'
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});
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} else {
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_assert["default"].deepStrictEqual(neighborAttr, {});
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}
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if (edge === e1) {
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_assert["default"].deepStrictEqual(edgeAttr, {
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weight: 3
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});
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} else {
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_assert["default"].deepStrictEqual(edgeAttr, {});
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}
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_assert["default"].strictEqual(graph.isUndirected(edge), undirected);
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});
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_assert["default"].strictEqual(count, graph.directedSize + graph.undirectedSize * 2);
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graph.addNode('Disconnected');
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count = 0;
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graph.forEachAdjacencyEntryWithOrphans(function (node, neighbor, attr, neighborAttr, edge, edgeAttr, undirected) {
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count++;
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if (node !== 'Disconnected') return;
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_assert["default"].strictEqual(neighbor, null);
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_assert["default"].strictEqual(neighborAttr, null);
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_assert["default"].strictEqual(edge, null);
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_assert["default"].strictEqual(edgeAttr, null);
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_assert["default"].strictEqual(undirected, null);
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}, true);
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_assert["default"].strictEqual(count, graph.directedSize + graph.undirectedSize * 2 + 1);
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}
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test(false);
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test(true);
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}
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},
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'#.forEachAssymetricAdjacencyEntry': {
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'it should iterate over the relevant elements.': function it_should_iterate_over_the_relevant_elements() {
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function test(multi) {
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var graph = new Graph({
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multi: multi
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});
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graph.addNode('John', {
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hello: 'world'
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});
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graph.mergeUndirectedEdge('John', 'Mary', {
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weight: 3
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});
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graph.mergeUndirectedEdge('Thomas', 'John');
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graph.mergeDirectedEdge('John', 'Thomas');
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var edges = [];
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graph.forEachAssymetricAdjacencyEntry(function (node, neighbor, attr, neighborAttr, edge, edgeAttr, undirected) {
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if (undirected) {
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_assert["default"].strictEqual(node < neighbor, true);
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}
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edges.push(edge);
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});
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_assert["default"].strictEqual(edges.length, graph.directedSize + graph.undirectedSize);
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_assert["default"].deepStrictEqual(new Set(edges).size, edges.length);
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graph.addNode('Disconnected');
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var count = 0;
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var nulls = 0;
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graph.forEachAssymetricAdjacencyEntryWithOrphans(function (node, neighbor, attr, neighborAttr, edge, edgeAttr, undirected) {
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count++;
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if (neighbor) return;
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nulls++;
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_assert["default"].strictEqual(neighbor, null);
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_assert["default"].strictEqual(neighborAttr, null);
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_assert["default"].strictEqual(edge, null);
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_assert["default"].strictEqual(edgeAttr, null);
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_assert["default"].strictEqual(undirected, null);
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}, true);
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_assert["default"].strictEqual(count, graph.directedSize + graph.undirectedSize + 3);
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_assert["default"].strictEqual(nulls, 3);
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}
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test(false);
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test(true);
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}
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}
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},
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Nodes: (0, _nodes["default"])(Graph, checkers),
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Edges: (0, _edges["default"])(Graph, checkers),
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Neighbors: (0, _neighbors["default"])(Graph, checkers)
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};
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} |