Files
msd-core/gsd-core/workflows/plan-review-convergence.md
Tom Boucher 7372d99a26 enhance(#2800): derive reviewer flag lists and gate reviewer lane docs across locales (#2882)
* chore(#2800): derive reviewer flag lists and gate reviewer lane docs across locales

The reviewer lane roster was hand-enumerated across five documentation
surfaces and three workflow files that had drifted apart: --kimi-code was
missing from all four translated COMMANDS.md mirrors, --coderabbit from
every workflow forwarding list, and --antigravity from FEATURES.md.

Adds checkReviewerDocsParity, a second pure gate deliberately separate from
checkReviewerLaneParity so a stale doc cannot make the runtime checker look
red. Workflows now derive their flag lists from a new review-lane flags
query instead of hand-enumerating them, which also retires the unanchored
grep that matched --agy inside --antigravity.

Documents the previously absent reviewer body and hostBehaviors field in
the capability manifest reference.

Closes #2800
Closes #2781
Closes #2272

* fix(#2800): key the docs parity table arm on first-cell position

Review found the flag arm was file-scoped, so the forwarding row that lists
every flag in its third cell satisfied it on its own. Deleting a lane's own
reviewer-table row -- the #2781 regression this gate exists to prevent --
therefore passed undetected.

Arm 4 keys on the FIRST table cell, which separates a lane row from the
forwarding row structurally and in every locale. Regression test included.

* fix(#2800): shape-filter the flags subcommand output

All three consumers read review-lane flags through an unquoted command
substitution so the output word-splits into loop items. Phase 2 admits
third-party overlay lanes, so an overlay flag containing whitespace would
inject a second loop item and one containing a glob would expand against
the cwd. Emit only well-formed flags so neither reaches the shell.

* fix(#2800): remove the regex length ceiling and count only prose mentions

Review found two real defects in the docs parity gate.

The never-throws contract was false: building a RegExp from a declared flag
or section title throws SyntaxError past ~100k chars, and Phase 2 admits
overlay lanes whose declared strings are untrusted in length. Every one of
these matches is literal, so String.includes replaces the regex outright,
which also deletes escapeLiteral and the llama.cpp escaping it existed for.

Arm 1 was context-blind: a flag mentioned only inside a fenced example or a
commented-out row counted as documented. Both are stripped before matching.

Also advertises all 13 lane flags in the argument-hint and corrects a stale
eleven-lane count in the slug grammar note.

* test(#2800): repoint the convergence suite off deleted workflow text

The derived flag loop deleted the literal per-flag grep lines four tests
matched on. Two of those failed loudly. The behavioral and property tests
failed SILENTLY instead: their end marker no longer resolved, so the parse
block extracted empty and both passed vacuously, and the property test's
gsd_run stub had a no-op default that hid it.

All now share one extractor and execute the real deployed block through a
gsd_run shim backed by the actual binary. The whitelist assertions become an
anti-parity check: re-adding a hand-written flag list must fail.

Also repairs two vacuous cases in the docs parity suite. The unreadable-doc
test called its own mock rather than the reader, and the integration test
bounded nothing, so a doc losing its marker would have been silently skipped
and still passed green.

* fix(#2800): run the derived flag loop after the launcher preamble

The remote matrix caught a real runtime bug, not a test artifact. In
autonomous.md and plan-review-convergence.md the launcher preamble that
defines gsd_run lives in a separate, LATER bash fence than the derived loop.
Each fence is its own shell, so gsd_run was undefined where the loop ran:
the command substitution yielded nothing and zero reviewer flags would have
been forwarded. Worse than the drift this epic fixes, and silent.

The whole CONVERGENCE_ARGS construction moves as one unit, because the
--max-cycles append sits between the loop and the preamble and would
otherwise have run against an uninitialized variable and then been dropped
by the relocated initializer.

Also documents all 13 lane flags in help/modes/full.md, which the repo gates
bidirectionally against each command's argument-hint.

* test(#2800): repoint the two converge suites off deleted flag literals

Both asserted workflow.includes('--codex') against the hand-enumerated list
the derived loop removed. They now assert the derivation itself, keep --all
and --text (convergence controls, still literal), and add an anti-parity
guard so re-adding a hardcoded list fails.

The lost pass-through proof is replaced with a real one: every flag the
tests used to hardcode is asserted present in the actual roster emitted by
the binary, which is the property the old assertion was protecting.

* test(#2800): acknowledge the workflow byte growth from the derived flag loop

* chore(#2800): backfill changeset pr number to 2882

* fix(#2800): strip HTML comments to a fixed point in the parity gate

CodeQL js/incomplete-multi-character-sanitization (high) on PR #2882: the
single-pass <!--...--> strip can leave a live <!-- behind, so a join-trick
construction smuggles a commented-out row past the gate and it counts as
documented. Not an injection risk here since nothing is rendered, but it is
the exact false pass this helper exists to prevent.

Strips to a fixed point, then treats any surviving opener as unterminated so
the multi-line branch closes it on a later line. Terminates because every
pass strictly shortens the string.

* test(#2800): pin the comment-smuggling regression with a real reproducer

The obvious fixture for this class does not reproduce it: <!--<!---->-->
leaves a dangling --> rather than a live <!--, and is caught either way, so
it would have passed with and without the fix. The join-trick construction
(<!- + <!--DUMMY--> + -...-->), the <scr<script>ipt> shape, genuinely
regresses on the single-pass strip and is what the test now uses.

---------

Co-authored-by: Test <test@example.com>
2026-07-30 19:14:13 -04:00

26 KiB
Raw Blame History

Cross-AI plan convergence loop — automates the manual chain: gsd-plan-phase N → gsd-review N --codex → gsd-plan-phase N --reviews → gsd-review N --codex → ... Plan-phase runs inline (bare Skill at depth 0) so it can spawn gsd-planner/gsd-plan-checker at depth 1. Review runs inside an isolated Agent (leaf skill — Bash only, no sub-agents needed). Orchestrator only does: init, loop control, parse CYCLE_SUMMARY for HIGH and actionable non-HIGH counts, stall detection, escalation.

<required_reading> Read all files referenced by the invoking prompt's execution_context before starting.

@$HOME/.claude/gsd-core/references/revision-loop.md @$HOME/.claude/gsd-core/references/gates.md @$HOME/.claude/gsd-core/references/agent-contracts.md </required_reading>

1. Parse and Normalize Arguments

Extract from $ARGUMENTS: phase number, reviewer flags (the declared reviewer lane flags, plus --all), --max-cycles N, --text, --ws.

PHASE=$(echo "$ARGUMENTS" | grep -oE '[0-9]+\.?[0-9]*' | head -1)

# #2315: do NOT default REVIEWER_FLAGS to --codex here. The default is resolved
# against review.default_reviewers in step 1.5 (after the config gate) so a bare
# invocation respects the configured reviewer lineup per ADR-0011 / ADR-0015.

MAX_CYCLES=$(echo "$ARGUMENTS" | grep -oE '\-\-max-cycles\s+[0-9]+' | awk '{print $2}')
if [ -z "$MAX_CYCLES" ]; then MAX_CYCLES=3; fi

GSD_WS=""
echo "$ARGUMENTS" | grep -qE '\-\-ws\s+\S+' && GSD_WS=$(echo "$ARGUMENTS" | grep -oE '\-\-ws\s+\S+')

1.5. Config Gate (feature disabled by default)

_GSD_SHIM_NAME="gsd-tools.cjs"; _GSD_RUNTIME_ROOT="${RUNTIME_DIR:-$(git rev-parse --show-toplevel 2>/dev/null || pwd)}"; GSD_TOOLS="${_GSD_RUNTIME_ROOT}/gsd-core/bin/${_GSD_SHIM_NAME}"; if [ -f "$GSD_TOOLS" ]; then gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${_GSD_RUNTIME_ROOT}/.claude/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${_GSD_RUNTIME_ROOT}/.claude/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${_GSD_RUNTIME_ROOT}/.codex/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${_GSD_RUNTIME_ROOT}/.codex/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif command -v gsd-tools >/dev/null 2>&1; then GSD_TOOLS="$(command -v gsd-tools)"; gsd_run() { "$GSD_TOOLS" "$@"; }; elif [ -f "${CLAUDE_CONFIG_DIR:-$HOME/.claude}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${CLAUDE_CONFIG_DIR:-$HOME/.claude}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${HERMES_HOME:-$HOME/.hermes}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${HERMES_HOME:-$HOME/.hermes}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${CURSOR_CONFIG_DIR:-$HOME/.cursor}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${CURSOR_CONFIG_DIR:-$HOME/.cursor}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${CODEX_HOME:-$HOME/.codex}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${CODEX_HOME:-$HOME/.codex}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${GEMINI_CONFIG_DIR:-$HOME/.gemini}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${GEMINI_CONFIG_DIR:-$HOME/.gemini}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${COPILOT_CONFIG_DIR:-$HOME/.copilot}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${COPILOT_CONFIG_DIR:-$HOME/.copilot}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${WINDSURF_CONFIG_DIR:-$HOME/.codeium/windsurf}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${WINDSURF_CONFIG_DIR:-$HOME/.codeium/windsurf}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${AUGMENT_CONFIG_DIR:-$HOME/.augment}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${AUGMENT_CONFIG_DIR:-$HOME/.augment}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${TRAE_CONFIG_DIR:-$HOME/.trae}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${TRAE_CONFIG_DIR:-$HOME/.trae}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${QWEN_CONFIG_DIR:-$HOME/.qwen}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${QWEN_CONFIG_DIR:-$HOME/.qwen}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${CODEBUDDY_CONFIG_DIR:-$HOME/.codebuddy}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${CODEBUDDY_CONFIG_DIR:-$HOME/.codebuddy}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${CLINE_CONFIG_DIR:-$HOME/.cline}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${CLINE_CONFIG_DIR:-$HOME/.cline}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${GROK_AGENTS_HOME:-$HOME/.agents}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${GROK_AGENTS_HOME:-$HOME/.agents}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${ANTIGRAVITY_CONFIG_DIR:-$HOME/.gemini/antigravity}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${ANTIGRAVITY_CONFIG_DIR:-$HOME/.gemini/antigravity}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${OPENCODE_CONFIG_DIR:-${XDG_CONFIG_HOME:-$HOME/.config}/opencode}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${OPENCODE_CONFIG_DIR:-${XDG_CONFIG_HOME:-$HOME/.config}/opencode}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; elif [ -f "${KILO_CONFIG_DIR:-${XDG_CONFIG_HOME:-$HOME/.config}/kilo}/gsd-core/bin/${_GSD_SHIM_NAME}" ]; then GSD_TOOLS="${KILO_CONFIG_DIR:-${XDG_CONFIG_HOME:-$HOME/.config}/kilo}/gsd-core/bin/${_GSD_SHIM_NAME}"; gsd_run() { node "$GSD_TOOLS" "$@"; }; else echo "ERROR: gsd-tools.cjs not found at $GSD_TOOLS and gsd-tools is not on PATH. Run: npx -y @opengsd/gsd-core@latest --claude --local" >&2; exit 1; fi; if [ -n "${CLAUDE_ENV_FILE:-}" ] && [ -n "${GSD_TOOLS:-}" ]; then printf "export PATH='%s':\"\$PATH\"\n" "${GSD_TOOLS%/*}" >> "$CLAUDE_ENV_FILE" 2>/dev/null || true; fi
CONVERGENCE_ENABLED=$(gsd_run query config-get workflow.plan_review_convergence 2>/dev/null || echo "false")

If CONVERGENCE_ENABLED is not "true": Display and exit:

gsd-plan-review-convergence is disabled (workflow.plan_review_convergence=false).

This feature automates the plan→review→replan loop using external AI reviewers.
Enable it with:

  gsd config-set workflow.plan_review_convergence true

Then re-run: /gsd:plan-review-convergence {PHASE}
# Reviewer flags are DERIVED from the declared lane roster (#2800/#2272), never hand-listed.
# Three surfaces used to enumerate them independently and had drifted: --coderabbit was missing
# from all three, --qwen/--cursor/--kimi-code from this one, and the old unanchored
# `grep -q '\-\-agy'` matched INSIDE --antigravity, appending both for one user flag.
# `--all` is a selection control, not a lane, so it stays literal.
# This block must stay AFTER the launcher preamble (below) because it calls `gsd_run` —
# do not move it back above the preamble in a future edit.
REVIEWER_FLAGS=""
for REVIEW_FLAG in $(gsd_run review-lane flags) --all; do
  if echo "$ARGUMENTS" | grep -qE "(^|[[:space:]])${REVIEW_FLAG}([[:space:]]|$)"; then
    REVIEWER_FLAGS="$REVIEWER_FLAGS $REVIEW_FLAG"
  fi
done

# #2315: Resolve reviewer selection when no explicit flag was given.
# The pre-fix bug unconditionally set REVIEWER_FLAGS="--codex" in step 1, BEFORE
# the config gate — silently overriding any configured review.default_reviewers
# (and, transitively, review.reviewer_instances). gsd-review sees the injected
# --codex as an explicit flag (precedence rule 1) and never reaches rule 3
# (review.default_reviewers). ADR-0011 and ADR-0015 both assume convergence
# respects review.default_reviewers on the no-flag path.
#
# After the fix: leave REVIEWER_FLAGS empty when default_reviewers is configured
# so gsd-review applies review.default_reviewers itself (rule 3). Only fall back
# to --codex when no default is configured, preserving the pre-fix default for
# unconfigured users (#2315 AC3). REVIEWER_DISPLAY mirrors the resolved value
# so the startup banner reflects what will actually run (#2315 AC4).
if [ -z "$REVIEWER_FLAGS" ]; then
  DEFAULT_REVIEWERS_JSON=$(gsd_run query config-get review.default_reviewers 2>/dev/null || echo "")
  if ! command -v jq >/dev/null 2>&1; then
    # jq is a documented production dependency (review.md, detect_clis — the
    # "jq-dependent reviewer lanes" note). If it is absent we cannot inspect
    # the configured default (it is a JSON array, not a --raw/--pick scalar), so
    # fail safe with --codex and surface the reason rather than silently
    # reproducing the #2315 override under degraded conditions.
    echo "WARNING: jq not on PATH — cannot read review.default_reviewers; falling back to --codex (#2315)" >&2
    REVIEWER_FLAGS="--codex"
    REVIEWER_DISPLAY="--codex (jq missing; cannot read review.default_reviewers)"
  else
    DEFAULT_REVIEWERS_COUNT=$(printf '%s' "$DEFAULT_REVIEWERS_JSON" | jq 'if type=="array" then length else 0 end' 2>/dev/null || echo 0)
    if [ "${DEFAULT_REVIEWERS_COUNT:-0}" -gt 0 ] 2>/dev/null; then
      : # leave REVIEWER_FLAGS empty — gsd-review applies review.default_reviewers itself
      REVIEWER_DISPLAY="review.default_reviewers ($(printf '%s' "$DEFAULT_REVIEWERS_JSON" | jq -r 'join(", ")' 2>/dev/null))"
    else
      REVIEWER_FLAGS="--codex"
      REVIEWER_DISPLAY="--codex (default; configure review.default_reviewers to change)"
    fi
  fi
else
  # Strip the leading space accumulated by the parse block so the banner renders
  # "Reviewers: --gemini" not "Reviewers:  --gemini" (#2315 review nit).
  REVIEWER_DISPLAY="${REVIEWER_FLAGS# }"
fi

2. Initialize

INIT=$(gsd_run init plan-phase "$PHASE")
if [[ "$INIT" == @file:* ]]; then INIT=$(cat "${INIT#@file:}"); fi

Parse JSON for: phase_dir, phase_number, padded_phase, phase_name, has_plans, plan_count, commit_docs, text_mode, response_language.

If response_language is set: All user-facing output should be in {response_language}.

Set TEXT_MODE=true if --text is present in $ARGUMENTS OR text_mode from init JSON is true. When TEXT_MODE is active, replace every AskUserQuestion call with a plain-text numbered list and ask the user to type their choice number.

3. Validate Phase + Pre-flight Gate

PHASE_INFO=$(gsd_run roadmap get-phase "${PHASE}")

If found is false: Error with available phases. Exit.

Display startup banner:

━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
 GSD ► PLAN CONVERGENCE — Phase {phase_number}
━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━

 Reviewers: {REVIEWER_DISPLAY}
 Max cycles: {MAX_CYCLES}

4. Initial Planning (if no plans exist)

If has_plans is true: Skip to step 5. Display: Plans found: {plan_count} PLAN.md files — skipping initial planning.

If has_plans is false:

Display: ◆ No plans found — running initial planning inline... (plan-phase runs here in the orchestrator — no output until planning is complete, ~1–5 min; expected, not a freeze)

Skill(skill="gsd-plan-phase", args="{PHASE} {GSD_WS}")

Run plan-phase inline (do NOT wrap it in Agent()). The convergence orchestrator runs at depth 0 with Agent available, so inline plan-phase can spawn gsd-planner and gsd-plan-checker at depth 1 — the one level of nesting that works on Claude Code. Wrapping plan-phase in Agent() would push it to depth 1 where the Agent tool is absent, preventing it from spawning any sub-agents. Wait until plan-phase completes and PLAN.md files are committed before continuing.

After plan-phase completes, verify plans were created:

PLAN_COUNT=$(ls ${phase_dir}/${padded_phase}-*-PLAN.md 2>/dev/null | wc -l)

If PLAN_COUNT == 0: Error — initial planning failed. Exit.

Display: Initial planning complete: ${PLAN_COUNT} PLAN.md files created.

5. Convergence Loop

Initialize loop variables:

cycle = 0
prev_unresolved_count = Infinity

5a. Review (Spawn Agent)

Increment cycle.

Display: ◆ Cycle {cycle}/{MAX_CYCLES} — spawning review agent... (runs in a subagent — no output until it returns, ~1–5 min; expected, not a freeze)

Agent(
  description="Cross-AI review Phase {PHASE} cycle {cycle}",
  prompt="Run /gsd:review for Phase {PHASE}.

Execute: Skill(skill='gsd-review', args='--phase {PHASE} {REVIEWER_FLAGS} {GSD_WS}')

Complete the full review workflow. Do NOT return until REVIEWS.md is committed.

IMPORTANT — CYCLE_SUMMARY contract (required):
Your final response MUST include a machine-readable line of exactly this form:

  CYCLE_SUMMARY: current_high=<N> current_actionable=<M>

Where <N> is the integer count of HIGH-severity concerns that REMAIN UNRESOLVED in this cycle's findings.
Where <M> is the integer count of actionable MEDIUM/LOW concerns that REMAIN UNRESOLVED because the latest PLAN.md files do not yet incorporate them or explicitly defer/reject them.

Counting rules:
  INCLUDE in the count:
    - Newly raised HIGHs in this cycle
    - PARTIALLY RESOLVED HIGHs: concern acknowledged and a mitigation is in progress, but not yet verified/completed
    - Previously raised HIGHs that are still unresolved

  EXCLUDE from the count:
    - FULLY RESOLVED HIGHs: concern addressed with verification complete (closed ticket, verification log, or reviewer sign-off)
    - HIGH mentions in retrospective/summary tables comparing cycles
    - Quoted excerpts from prior reviews referencing past HIGH items
    - MEDIUM/LOW concerns that are already incorporated into a PLAN.md task, action, acceptance_criteria, verify command, must_haves item, threat model, artifact list, or explicit deferral/rejection rationale

Definitions:
  PARTIALLY RESOLVED — concern acknowledged and mitigation is in progress but not yet verified/completed (e.g., open ticket exists but fix not landed).
  FULLY RESOLVED — concern addressed with verification complete (closed ticket, verification log, or explicit reviewer sign-off confirming closure).
  ACTIONABLE — a non-HIGH review finding that would be invisible to /gsd:execute-phase unless it is incorporated into PLAN.md or explicitly deferred/rejected in PLAN.md.

Your final response MUST also include this section immediately after the CYCLE_SUMMARY line:

## Current HIGH Concerns
[List each unresolved HIGH with a brief description, one per bullet]
[If none: write exactly 'None.']

## Current Actionable Non-HIGH Concerns
[List each unresolved actionable MEDIUM/LOW with a brief description and the PLAN.md change still needed, one per bullet]
[If none: write exactly 'None.']
These two sections MUST be the final content of your response, in this exact order, with no additional "## " headings after them (the source-grounding "Verification coverage" block is appended to REVIEWS.md, not to this return message).",
  mode="auto"
)

Source-grounding pass (config: plan_review.source_grounding, default on)

Run this pass unless plan_review.source_grounding is false. It verifies every symbol the plan cites against the project source before approval, catching hallucinated symbols at review time instead of execution time.

  1. Enumerate cited symbols. List every referenced symbol by kind, quoting the plan line for each (coverage must be auditable): decorators (@name), classes/methods (Class.method), functions (module.function), CLI flags (--name), file paths, dataclass/struct fields.
  2. Exclude new artifacts. Do NOT verify symbols the plan declares under its "Artifacts this phase produces" section — those are created by this phase, not references to existing code.
  3. Resolve each remaining symbol using the effective authority adapter (resolved deterministically — see step 4a):
    • grep — ripgrep / Read the source; confirm the name appears as a real declaration.
    • intel — consult .planning/intel/API-SURFACE.md / api-map.json (only when intel.enabled). Record one verdict per symbol: VERIFIED (quote file:line), MISSING (adapter can check this language/kind and the symbol is absent), AMBIGUOUS (multiple candidates), or UNCHECKABLE (adapter cannot analyze this language/kind — e.g. non-JS under intel, or any signature under grep). Never treat UNCHECKABLE as verified or missing. 4a. Resolve effective authority (deterministic — replaces manual intel.enabled reasoning):
    EFFECTIVE_AUTHORITY=$(gsd_run drift-guard authority --raw)
    
  4. Severity & gating — classify each symbol's verdict using the seam (do not apply the table manually):
    # For each symbol, e.g.:
    RESULT=$(gsd_run drift-guard severity --status <verdict> --authority "$EFFECTIVE_AUTHORITY")
    # $RESULT is JSON: {"severity":"…","hardBlock":true|false}
    
    • hardBlock: true (HIGH at authority lsp/scip) — stops the review cycle immediately; do not proceed until the plan author resolves the missing symbol.
    • hardBlock: false, severity needs-acknowledgement — plan proceeds only if the author confirms the symbol is genuinely new or dynamically resolved, and that acknowledgement is recorded.
    • AMBIGUOUS → MEDIUM. UNCHECKABLE → INFO.
    • Signature mismatches cannot be asserted under grep/intel; report the signature as UNCHECKABLE.
  5. Coverage block. Append a "Verification coverage" section to REVIEWS.md listing every UNCHECKABLE/skipped symbol and why — a clean review must never silently mean "nothing was checked."

After agent returns, verify REVIEWS.md exists:

REVIEWS_FILE=$(ls ${phase_dir}/${padded_phase}-REVIEWS.md 2>/dev/null)

If REVIEWS_FILE is empty: Error — review agent did not produce REVIEWS.md. Exit.

5b. Extract unresolved counts from CYCLE_SUMMARY Contract

Do NOT grep REVIEWS.md for HIGH or actionable counts. REVIEWS.md accumulates history across cycles — resolved findings from prior cycles remain in the file as audit trail, inflating a raw grep count and causing false stall detection.

Parse HIGH_COUNT and ACTIONABLE_COUNT from the review agent's return message via the CYCLE_SUMMARY contract:

# Extract integers from "CYCLE_SUMMARY: current_high=N current_actionable=M" in the agent's return message
SUMMARY_LINE=$(echo "$REVIEW_AGENT_RETURN" | grep -oE 'CYCLE_SUMMARY:.*' | head -1)
HIGH_COUNT=$(echo "$SUMMARY_LINE" | grep -oE 'current_high=[0-9]+' | head -1 | grep -oE '[0-9]+$')
ACTIONABLE_COUNT=$(echo "$SUMMARY_LINE" | grep -oE 'current_actionable=[0-9]+' | head -1 | grep -oE '[0-9]+$')

if [ -z "$SUMMARY_LINE" ]; then
  echo "Review agent did not honor the CYCLE_SUMMARY contract — cannot determine unresolved review counts. Retry or switch reviewer."
  exit 1
fi

if [ -z "$HIGH_COUNT" ]; then
  echo "CYCLE_SUMMARY present but current_high is missing or malformed — expected integer, got non-numeric or absent value. Retry or switch reviewer."
  exit 1
fi

if [ -z "$ACTIONABLE_COUNT" ]; then
  echo "CYCLE_SUMMARY present but current_actionable is missing or malformed — expected integer, got non-numeric or absent value. Retry or switch reviewer."
  exit 1
fi

UNRESOLVED_COUNT=$((HIGH_COUNT + ACTIONABLE_COUNT))

# Extract the ## Current HIGH Concerns section from the agent's return message
HIGH_LINES=$(echo "$REVIEW_AGENT_RETURN" | awk '/^## Current HIGH Concerns/{found=1; next} found && /^##/{exit} found{print}')
ACTIONABLE_LINES=$(echo "$REVIEW_AGENT_RETURN" | awk '/^## Current Actionable Non-HIGH Concerns/{found=1; next} found && /^##/{exit} found{print}')

if [ "${HIGH_COUNT}" -gt 0 ] && [ -z "${HIGH_LINES}" ]; then
  echo "⚠ Review agent's CYCLE_SUMMARY reports ${HIGH_COUNT} HIGHs but did not provide ## Current HIGH Concerns section — continuing with incomplete escalation details."
fi

if [ "${ACTIONABLE_COUNT}" -gt 0 ] && [ -z "${ACTIONABLE_LINES}" ]; then
  echo "⚠ Review agent's CYCLE_SUMMARY reports ${ACTIONABLE_COUNT} actionable non-HIGH concerns but did not provide ## Current Actionable Non-HIGH Concerns section — continuing with incomplete escalation details."
fi

If HIGH_COUNT == 0 and ACTIONABLE_COUNT == 0 (converged):

gsd_run state planned-phase --phase "${PHASE}" --name "${phase_name}" --plans "${PLAN_COUNT}"

Display:

━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
 GSD ► CONVERGENCE COMPLETE ✓
━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━

 Phase {phase_number} converged in {cycle} cycle(s).
 No HIGH concerns remaining.
 No actionable MEDIUM/LOW review findings remain outside PLAN.md.

 REVIEWS.md: {REVIEWS_FILE}
 Next: /gsd:execute-phase {PHASE}

Exit — convergence achieved.

If HIGH_COUNT > 0 or ACTIONABLE_COUNT > 0: Continue to 5c.

5c. Stall Detection + Escalation Check

Display: ◆ Cycle {cycle}/{MAX_CYCLES} — {HIGH_COUNT} HIGH, {ACTIONABLE_COUNT} actionable non-HIGH review concerns found

Stall detection: If UNRESOLVED_COUNT >= prev_unresolved_count:

⚠ Convergence stalled — unresolved review concern count not decreasing
  ({UNRESOLVED_COUNT} unresolved concerns, previous cycle had {prev_unresolved_count})

Max cycles check: If cycle >= MAX_CYCLES:

If TEXT_MODE is true, present as plain-text numbered list:

Plan convergence did not complete after {MAX_CYCLES} cycles.
{HIGH_COUNT} HIGH concerns and {ACTIONABLE_COUNT} actionable non-HIGH concerns remain:

{HIGH_LINES}

{ACTIONABLE_LINES}

How would you like to proceed?

1. Proceed anyway — Accept plans with remaining review concerns and move to execution
2. Manual review — Stop here, review REVIEWS.md and address concerns manually

Enter number:

Otherwise use AskUserQuestion:

AskUserQuestion([
  {
    question: "Plan convergence did not complete after {MAX_CYCLES} cycles. {HIGH_COUNT} HIGH concerns and {ACTIONABLE_COUNT} actionable non-HIGH concerns remain:\n\n{HIGH_LINES}\n\n{ACTIONABLE_LINES}\n\nHow would you like to proceed?",
    header: "Convergence",
    multiSelect: false,
    options: [
      { label: "Proceed anyway", description: "Accept plans with remaining review concerns and move to execution" },
      { label: "Manual review", description: "Stop here — review REVIEWS.md and address concerns manually" }
    ]
  }
])

If "Proceed anyway": Display final status and exit. If "Manual review":

Review the concerns in: {REVIEWS_FILE}

To replan manually:  /gsd:plan-phase {PHASE} --reviews
To restart loop:     /gsd:plan-review-convergence {PHASE} {REVIEWER_FLAGS}

Exit workflow.

5d. Replan (Inline)

If under max cycles:

Update prev_unresolved_count = UNRESOLVED_COUNT.

Display: ◆ Replanning inline with review feedback... (plan-phase runs here in the orchestrator — no output until replanning is complete, ~1–5 min; expected, not a freeze)

Skill(skill="gsd-plan-phase", args="{PHASE} --reviews --skip-research {GSD_WS}")

Run plan-phase inline (do NOT wrap it in Agent()). Same rationale as step 4: the convergence orchestrator runs at depth 0 with Agent available, so inline plan-phase can spawn gsd-planner and gsd-plan-checker at depth 1. Wrapping in Agent() pushes plan-phase to depth 1 where the Agent tool is absent — the replan loop can never produce a revised plan when HIGHs are found. This is the root cause of bug #936. Actionable MEDIUM/LOW findings must be incorporated into executable PLAN.md content or explicitly deferred/rejected in the relevant PLAN.md before convergence can complete. Wait until plan-phase completes (outputs '## PLANNING COMPLETE') and updated PLAN.md files are committed before continuing.

After plan-phase completes → go back to step 5a (review again).

<success_criteria>

  • Config gate checked before running — exits with enable instructions if workflow.plan_review_convergence is false
  • Initial planning via inline Skill("gsd-plan-phase") if no plans exist — NOT wrapped in Agent() (bug #936: depth-1 Agent has no Agent tool)
  • Review via Agent → Skill("gsd-review") — isolated Agent is correct; gsd-review is a Bash leaf with no sub-agent spawns; {GSD_WS} forwarded
  • Replan via inline Skill("gsd-plan-phase --reviews") — NOT wrapped in Agent(); inline lets plan-phase spawn gsd-planner/gsd-plan-checker at depth 1
  • Orchestrator only does: init, config gate, loop control, parse CYCLE_SUMMARY for HIGH and actionable non-HIGH counts, stall detection, escalation
  • HIGH and actionable non-HIGH counts extracted from review agent's CYCLE_SUMMARY return message (not by grepping REVIEWS.md)
  • Review agent prompt defines CYCLE_SUMMARY: current_high= current_actionable= contract with PARTIALLY/FULLY RESOLVED/ACTIONABLE definitions
  • Abort with clear error if CYCLE_SUMMARY is absent; distinguish malformed from absent
  • Warn if HIGH_COUNT > 0 but ## Current HIGH Concerns section is absent from return message
  • Abort with clear error if current_actionable is absent or malformed
  • Warn if ACTIONABLE_COUNT > 0 but ## Current Actionable Non-HIGH Concerns section is absent from return message
  • The review Agent fully completes gsd-review before returning (plan-phase runs inline — no Agent wrap)
  • Loop exits on: no HIGH concerns and no actionable non-HIGH concerns (converged) OR max cycles (escalation)
  • Stall detection reported when total unresolved review concern count is not decreasing
  • STATE.md updated on convergence completion </success_criteria>