Mechanical rename produced by scripts/msd-rename.cjs: gsd/Gsd/GSD -> msd/Msd/MSD across contents and paths, upstream package/repo coordinates -> @golem15/msd-core and golem15com/msd-core. Deep links into upstream history, sibling upstream packages, the GSD-2 import feature, CHANGELOG.md and .changeset/ are kept as-is. Hand edits on top: MSD block-letter banner and logos, LICENSE copyright line, package/plugin identity, regenerated lockfile, install-tree fixtures, derived registries and benchmark baseline; migration checksum baseline re-locked (MSD keeps its own install state, so no install had applied the old sums); sort-order and regex-escaped expectations in tests adjusted.
171 lines
8.1 KiB
JavaScript
171 lines
8.1 KiB
JavaScript
'use strict';
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/**
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* #4619 — execute-phase's `$((10#{phase_number}))` shell arithmetic is a hard
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* syntax error when `{phase_number}` is decimal (inserted phase, e.g. `01.1`) or
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* N-segment (e.g. `23.1.2`): `$((10#01.1))` aborts the whole script in a
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* non-interactive shell, both in bash and zsh. The fix zero-strips only the
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* LEADING integer segment via parameter expansion and keeps the remainder as an
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* escaped-dot string for the downstream anchored ERE — never touching real
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* shell arithmetic on a non-integer value.
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*
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* These tests are BEHAVIORAL: they execute the actual fixed snippet (and, for
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* the regression control, the actual OLD broken snippet) via a real bash
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* subprocess, asserting on literal stdout/exit-code — not just string-matching
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* the source. A companion sourcetext check (mirroring the established pattern
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* in tests/safe-resume-gate-anchoring.test.cjs) proves each of the 4 real
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* production sites still carries a byte-identical copy of the fixed logic
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* (under each site's own variable-name spelling), so a future accidental
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* revert of any ONE site is caught.
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*/
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const { test, describe } = require('node:test');
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const assert = require('node:assert/strict');
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const fs = require('node:fs');
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const path = require('node:path');
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const { execFileSync } = require('node:child_process');
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const EXECUTE_PHASE = path.join(__dirname, '..', 'msd-core', 'workflows', 'execute-phase.md');
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const COMPLETION_RECONCILIATION = path.join(__dirname, '..', 'msd-core', 'workflows',
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'execute-phase', 'steps', 'completion-reconciliation.md');
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const TDD_REF = path.join(__dirname, '..', 'msd-core', 'references', 'tdd.md');
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const TIMEOUT = 5000;
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// The fixed transformation, parameterized by (source variable, target prefix) — this
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// is a byte-for-byte copy of what ships at all 4 sites:
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// site 1/2 (execute-phase.md): source PHASE_NUMBER, prefix PHASE
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// site 3 (completion-reconciliation.md): source SPOT_PHASE_NUMBER, prefix SPOT_PHASE
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// site 4 (tdd.md): source PHASE, prefix PHASE
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// #4748: the split is at the first NON-DIGIT, not the first dot, so a letter
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// suffix (`03A`, `23A.1.2`) rides through in the rest instead of aborting the
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// base-10 arithmetic; the rest is `_REST`, no longer only a `_FRAC`.
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function fixedSnippet(sourceVar, prefix, indent = '') {
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return `${indent}${prefix}_INT=\${${sourceVar}%%[!0-9]*}; ${prefix}_REST=\${${sourceVar}#"$${prefix}_INT"}\n` +
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`${indent}${prefix}_N="$((10#$${prefix}_INT))\${${prefix}_REST//./\\\\.}"`;
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}
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function runFixed(phaseNumberValue) {
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const script = `PHASE_NUMBER="${phaseNumberValue}"\n${fixedSnippet('PHASE_NUMBER', 'PHASE')}\necho "$PHASE_N"`;
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return execFileSync('bash', [], { input: script, encoding: 'utf8', timeout: TIMEOUT }).trim();
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}
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describe('#4619 — execute-phase decimal/N-segment phase-number arithmetic', () => {
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test('fixed snippet zero-strips the leading integer segment for a decimal phase (01.1 -> 1\\.1)', () => {
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assert.equal(runFixed('01.1'), '1\\.1');
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});
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test('fixed snippet zero-strips the leading integer segment for an N-segment phase (23.1.2 -> 23\\.1\\.2)', () => {
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assert.equal(runFixed('23.1.2'), '23\\.1\\.2');
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});
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test('regression control: a plain unpadded phase number is unchanged (12 -> 12)', () => {
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assert.equal(runFixed('12'), '12');
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});
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test('regression control: a padded plain phase number is still zero-stripped (01 -> 1)', () => {
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assert.equal(runFixed('01'), '1');
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});
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test('#4748: a letter-suffixed phase number keeps its letter and zero-strips the digit run (03A -> 3A, 23A.1.2 -> 23A\\.1\\.2)', () => {
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assert.equal(runFixed('03A'), '3A');
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assert.equal(runFixed('23A.1.2'), '23A\\.1\\.2');
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});
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test('failing-first: the OLD $((10#...)) form is a hard shell syntax error on a decimal phase number', () => {
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assert.throws(() => {
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execFileSync('bash', ['-c', 'echo $((10#01.1))'], { encoding: 'utf8', timeout: TIMEOUT });
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}, /syntax error|status/);
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});
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test('the NEW form succeeds on the exact same input that hard-errors the OLD form', () => {
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assert.doesNotThrow(() => runFixed('01.1'));
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});
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test('the resulting anchored ERE matches decimal commit scopes and rejects near-miss scopes', () => {
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const phaseN = runFixed('01.1'); // '1\.1'
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const planN = '3';
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const re = `^[a-z]+\\((0*${phaseN})-(0*${planN})\\):`;
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const cases = [
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['feat(01.1-03):', true],
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['test(1.1-3):', true],
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['feat(01-03):', false],
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['feat(01.2-03):', false],
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['feat(011-03):', false],
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['feat(12-03):', false],
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];
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for (const [subject, expected] of cases) {
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const script = `echo ${JSON.stringify(subject)} | grep -qE ${JSON.stringify(re)}`;
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let matched;
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try {
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execFileSync('bash', [], { input: script, encoding: 'utf8', timeout: TIMEOUT });
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matched = true;
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} catch {
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matched = false;
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}
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assert.equal(matched, expected, `expected ${subject} match=${expected} against ${re}`);
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}
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});
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test('the resulting anchored ERE matches a plain padded-integer phase and rejects near-miss scopes', () => {
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const phaseN = runFixed('01'); // '1'
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const planN = '3';
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const re = `^[a-z]+\\((0*${phaseN})-(0*${planN})\\):`;
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const cases = [
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['feat(01-03):', true],
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['feat(01.1-03):', false],
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['feat(011-03):', false],
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['feat(12-03):', false],
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];
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for (const [subject, expected] of cases) {
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const script = `echo ${JSON.stringify(subject)} | grep -qE ${JSON.stringify(re)}`;
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let matched;
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try {
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execFileSync('bash', [], { input: script, encoding: 'utf8', timeout: TIMEOUT });
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matched = true;
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} catch {
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matched = false;
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}
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assert.equal(matched, expected, `expected ${subject} match=${expected} against ${re}`);
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}
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});
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describe('source parity — each of the 4 production sites carries the fixed logic', () => {
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test('execute-phase.md safe_resume_gate carries the fixed PHASE_NUMBER/PHASE_INT/PHASE_REST/PHASE_N logic', () => {
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const w = fs.readFileSync(EXECUTE_PHASE, 'utf8');
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assert.ok(w.includes(fixedSnippet('PHASE_NUMBER', 'PHASE')),
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'safe_resume_gate must carry the byte-identical fixed decimal-tolerant snippet');
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});
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test('execute-phase.md TDD gate carries the fixed PHASE_NUMBER/PHASE_INT/PHASE_REST/PHASE_N logic', () => {
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const w = fs.readFileSync(EXECUTE_PHASE, 'utf8');
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// The TDD gate block is nested one level deeper (4-space indent) than
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// safe_resume_gate's top-level snippet.
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assert.ok(w.includes(fixedSnippet('PHASE_NUMBER', 'PHASE', ' ')),
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'the TDD gate must carry the byte-identical fixed decimal-tolerant snippet (indented)');
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});
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test('completion-reconciliation.md carries the fixed SPOT_-prefixed logic', () => {
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const frag = fs.readFileSync(COMPLETION_RECONCILIATION, 'utf8');
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assert.ok(frag.includes(fixedSnippet('SPOT_PHASE_NUMBER', 'SPOT_PHASE')),
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'completion-reconciliation spot-check must carry the byte-identical fixed SPOT_-prefixed snippet');
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});
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test('tdd.md carries the fixed bare PHASE/PLAN logic', () => {
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const ref = fs.readFileSync(TDD_REF, 'utf8');
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assert.ok(ref.includes(fixedSnippet('PHASE', 'PHASE')),
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'tdd.md gate-enforcement example must carry the byte-identical fixed bare-PHASE snippet');
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});
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test('none of the 4 sites still contains the old unconditional $((10#...)) form on a template/variable phase number', () => {
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const w = fs.readFileSync(EXECUTE_PHASE, 'utf8');
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const frag = fs.readFileSync(COMPLETION_RECONCILIATION, 'utf8');
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const ref = fs.readFileSync(TDD_REF, 'utf8');
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assert.ok(!w.includes('PHASE_N=$((10#{phase_number}))'), 'old broken form must not remain in execute-phase.md (site 1)');
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assert.ok(!w.includes('PHASE_N=$((10#${PHASE_NUMBER}))'), 'old broken form must not remain in execute-phase.md (site 2)');
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assert.ok(!frag.includes('SPOT_PHASE_N=$((10#{phase_number}))'), 'old broken form must not remain in completion-reconciliation.md (site 3)');
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assert.ok(!ref.includes('PHASE_N=$((10#${PHASE}))'), 'old broken form must not remain in tdd.md (site 4)');
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});
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});
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});
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